Renewable Energy in World’s Top-10 Oil Producing Countries

In April 2019, Puerto Rico Gov. Ricardo Rosselló signed a bill that aims to power the island totally through renewable energy by 2050. It also aims to completely give up coal by 2028. Puerto Rico is an unincorporated territory of the United States of America, which is today the world’s largest oil producing country.

eco-friendly electrical solutions

This begs the question, what are the world’s top 10 oil producers doing to increase energy from renewable sources? First, let us have a look at how much oil these countries produced in 2017, which was the latest data available at the time of writing this article.

But what are these countries doing about renewable energy? View the interactive chart below to compare and contrast different countries and their renewable energy production, along with their installed capacity. The data was taken from International Renewable Energy Agency (IRENA).

You can also compare the five MENA countries. As you can see, the GCC countries Kuwait, Saudi Arabia, and the UAE focus more on solar energy, both in terms of installed capacity and actual electricity generation. This is marked by the fact that these countries are closer to equator, which means that they receive a lot of sunlight, coupled with sporadic desert settlements. This enables these countries to harvest more from solar energy. Now however, some of these countries are also investing in other renewable energy.

Priscilla Joseph, part of BactoWatt, a startup which aims to recover biogas from wastewater in the UAE, said, “There seems to be a change in paradigm from solar to bioenergy. Apart from that, the UAE is also looking into generating power through nuclear energy.”

Climate change and shifting goals

While it is important to look at how much countries are interested in renewable energy, it is also equally important to see their future oil production. It is expected that both United States of America and the UAE will increasing their oil production outputs in the future. Iran increased its oil production capacity from 3.5 million b/d in 2004 to over 3.7 million b/d in 2017.

Even with Puerto Rico’s bold announcement, the government of the United States of America seems to be going the other way. For example, the president of the USA Donald Trump announced in June 2017 it was pulling out of the Paris Climate Agreement, even though it was the second largest contributor of the world’s carbon emissions in 2015.

However, according to the terms of the agreement, no country can officially withdraw from it until 4 years have lapsed after the agreement came into effect for that country. For the USA, that date would be November 4 2020, one day after the US presidential elections. So at present, the USA continues to be a signed party to the 2015 Paris Agreement.

Meanwhile, the Saudi Arabia’s goals to combat climate change seem greatly insufficient, as pointed out by some climate change organisations. For example, Climate Action Tracker reported the country’s Paris Accord goals as “critically insufficient.” The organisation also said, “The envisioned emissions pathway towards 2030 is highly unclear, due to a lack of data availability, including the absence of any national emissions projections and the fact that Saudi Arabia has not published the baseline corresponding to its Paris Agreement target.”

Russia was also rated the same by the organisation. It said that even though the Russian government had drafted the “Ecology” programme in 2018 focusing on air pollution reduction, reforestation and improving waste management, none of the ten directions in the Ecology project relate directly to GHG emissions reductions.”

As for the top 10 oil producing countries, all of them except Iran have signed the Paris Agreement and ratified it at a later date.

6 Benefits of Using an Eco-Friendly Mattress

With the number of options available in the market today, choosing which mattress to buy can be challenging. This is especially true if you don’t have any experience in buying one. If you’re looking for a mattress that can provide more than just comfort, consider buying an eco-friendly and organic mattress. Although new to some, you’ll be surprised how this type of mattress can improve the quality of your life in the long run.

All mattresses can be used for sleeping. However, there are some advantages that are only unique to an eco-friendly mattress.

Here are some of the benefits you can experience once you start using an eco-friendly mattress:

1. It Doesn’t Harm The Environment

As the name suggests, an eco-friendly mattress doesn’t harm the environment in any way. Unlike other types of mattresses, the materials used in creating and producing an eco-friendly mattresses are biodegradable and sustainable. This means that the product—from its creation down to its manufacture—doesn’t leave any negative impact on the environment.

And it doesn’t just end there: when you decide to dispose of an eco-friendly mattress, you can be at ease knowing that this product will naturally break down without causing harm to the environment or the habitat of animals.

2. It Only Uses Hypoallergenic Materials

It’ll be hard for you to sleep at night when you suffer from itching, sores, and allergies. You’ll spend your evenings thinking about how you can relieve the discomfort and reach out for remedies. If you don’t want to experience any of these things, use a sustainable mattress.

Because this type of mattress is made from organic cotton and wool, you can be sure that this mattress will not cause any allergies or rashes. This is one of the reasons why organic and eco-friendly mattresses are the perfect choice for people who are suffering from allergy problems and respiratory issues.

Regular mattresses, on the other hand, are full of chemicals and antimicrobials, which can trigger allergies or breathing discomfort.

3. It’s Extremely Comfortable

The comfort you can experience from your mattress can make or break the quality of your sleep. When your mattress can provide optimal comfort, it’ll be easier for you to lose yourself to sleep and stay asleep for hours.

You can achieve extreme comfort once you buy environmentally-friendly mattresses, which are made from natural cotton and latex—materials that are very comfortable to sleep on. These materials will give your body the support it needs so you can sleep without interruption.

4. It’s Not Susceptible To Mites And Other Bed Bugs

Even if you bought the most expensive mattress from your city, if you don’t exert time and effort in taking care of it, don’t expect that this mattress will last for very long. How you clean and maintain your mattress can affect its longevity.

If you had problems with mites and bed bugs with your old mattress, switching to an organic and eco-friendly mattress might do the trick. The materials used in creating an environment-friendly mattress are resistant to mites and bed bugs. These materials are dense and thick, making it hard for these germs and bacteria to penetrate it.

sleep-improvement-guide

5. It’s Free From Molds

Aside from mites and bed bugs, certain types of mattresses are also prone to molds. Molds occur whenever sweat from your body seeps into the mattress. Over time, this can cause molds to grow. This is something that you will never experience once you use organic mattresses.

Unlike conventional mattresses, eco-friendly ones wick moisture away from the body. This feature ensures that your body stays cool, and that the mattress stays dry and fresh longer. A mattress that is moisture-free is also mold-free!

6. It Can Regulate Temperature

The temperature of your sleeping environment can also influence the quality and longevity of your sleep. It’ll be hard for you to achieve a good night’s sleep when you’re in a humid environment because instead of sleeping, you’ll be spending a lot of time fanning yourself. Over time, the humidity of your sleeping environment can become the reason why you’ll lose sleep every night. The solution? Switch to using organic and eco-friendly mattresses.

An eco-friendly mattress is made from materials that are natural temperature regulators. If you use this type of mattress, you’ll feel cool even during summer or warm nights. It also has special insulation capabilities and can provide warmth during the cold weather.

Scout For Options

Now that you’re convinced that an eco-friendly mattress is rewarding, start scouting for manufacturers that sell this product. Weigh your options so you’ll end up buying from a manufacturer that sells high-quality organic mattresses at a reasonable price.

Bonus Tip: If you are looking for ways to repurpose your old memory foam mattress, check out this article.

What Are the Environmental Benefits of Electric Cars

People are moving away from driving gas-powered vehicles at a tremendous rate for financial and environmental reasons. We have looked at a few key areas where using electric cars will benefit us in the areas we live in and in our wallets. Considering the first Tesla to hit the road was less than twenty years ago (2003), we have seen a dramatic shift towards electric vehicles from small manufacturers all the way through to major car producing companies. This shift has enormous environmental benefits for all of us and will continue to do so for generations to come.

1. Clean Air in Our Neighbourhoods

If you have ever lived in or visited a major city or town, you would have noticed the poor air quality that traditional gas-powered cars and trucks cause. By switching to electric-powered vehicles, we are immediately improving the air quality in our own neighborhoods. To power our electric vehicles, we still need fuel, but by using the main grid to get this fuel, we help to make the air cleaner near our homes and offices.

According to the world’s air quality index, all the high numbers come from urban areas, like Beijing and Mumbai, that have millions of standard vehicles being driven. Fortunately, for both China and India, both countries are aware of the economic and environmental benefits of electric in the foreseeable future.

2. The Rise in Popularity

Electric vehicles are not a new invention, but the technology behind them (specifically, batteries) has only recently made it a viable option for everyday drivers. Many countries have incentives in place to make owning an electric car more appealing, and this has helped to raise the number of people opting for electric over a gas-powered vehicle. In a recent Australian survey, it was found that 54.1% would choose electric for environmental reasons, while the rest voted for ease of use and the cheaper overall cost.

Electric vehicle sales have grown tremendously in countries such as Norway that offers many incentives to encourage users to switch. Almost half of all car sales in Norway last year were for electric vehicles. Considering Norway has vast petroleum and gas reserves, this shows just how determined they are to go electric.

3. Cost Savings

Electric vehicles are still more expensive to buy compared to a gas-powered car, but this discrepancy is being reduced every year. The main expense of electric cars is the battery packs, which power them, and as technology improves, these costs are naturally coming down. A noticeable saving for electric cars is the fuel costs to run them. In the USA, according to a study conducted at the University of Michigan, the fuel cost of electric vs. gasoline revealed a more than fifty percent saving in favor of electric.

On top of the annual fuel bills, you also must consider that electric cars don’t need the same amount of yearly maintenance, thanks to fewer moving parts. They still need the same maintenance for tires, brakes, and suspension, but none for the engine itself as there is only one moving part. As many vehicle manufacturers offer extremely long warranties on the battery packs, you can drive safely for years before you need to invest in maintenance to keep the car on the road.

4. Improving the Environment

We already know that using electric vehicles will instantly improve the air quality in urban areas. The big focus is on how non-gas-powered cars will improve the environment as a whole. In areas where it is feasible, we are now seeing governments investing in renewable energy alternatives such as solar, wind, and tidal. With our growing reliance on electric, we see many companies and countries looking to find cleaner methods for creating energy.

Nuclear power can be a very clean source of energy, but it does have its drawbacks, as was witnessed after the Fukushima Tsunami, an event that resulted in a nuclear disaster. The best solution for electric power generation is to have a vast network of renewable sources, which can cope with the enormous demands put on our national grids. By utilizing clean energy, we will lessen our reliance on fossil fuels, which in turn will reduce the number of harmful gases that are released into the atmosphere every year.

5. Creating a New Economy

The need for clean energy has created a new economy that has been and will continue to grow to meet demand. The last time we saw a new economy created was when the internet first started being an essential tool for businesses. Many petroleum producers are now investing heavily in renewable energy, including solar, tidal, wind, and geothermal, to stay at the top of the energy-producing market. The continued investment in renewables has created many jobs for engineers and production plants to be able to service the expanding market.

6. Go Green

It’s not a matter of whether you will buy an electric vehicle, but more a case of when. With many incentives available for those who choose to purchase an electric vehicle today, the reason not to make the change is becoming less and less obvious. Check with your local state to find out what tax reductions and incentives they have available. Buying electric may be cheaper than you thought and, crucially, should you decide to take the plunge, you can rest assured that you will be contributing towards a cleaner and greener future for us all.

6 Ways to Make Your Hajj Environmentally-Friendly

As the Hajj season approaches, millions of Muslims from around the world will head to Mecca to perform their sacred rituals. In light of this massive gathering of believers, the importance of preserving the environment and adhering to sustainability is highlighted, based on the teachings of Islam, which urge us to protect the earth and refrain from corruption. But, how can every Hajj pilgrim contribute to making their Hajj more environmentally friendly? Below are a few easy, yet effective, ways to make your Hajj sustainable:

waste generation during Hajj

1. Reducing the Use of Plastic

Single-use plastics are one of the biggest sources of pollution during the Hajj season. Millions of plastic cups and plastic bags are used and then discarded, leading to massive amounts of waste. Each pilgrim can carry a refillable water bottle, personal eating utensils such as spoons and forks made from eco-friendly materials, and cloth bags instead of plastic ones. It is also preferable to purchase products packaged in paper or biodegradable materials.

2. Choosing Public Transportation

Public transportation, such as modern trains connecting the holy sites or buses dedicated to pilgrims, is an ideal option for reducing carbon emissions and alleviating the traffic congestion that Hajj experiences annually. Many also encourage the use of small bicycles with limited capacity, whenever possible. Walking, whenever possible, is not only a means of transportation; it is also an additional act of worship and an adherence to the Sunnah of the Prophet (peace and blessings be upon him), who loved walking.

3. Conserving Water and Energy

With the rising temperatures in Mecca, many people tend to overuse water and electricity. It is important for pilgrims to use water sparingly for ablution and ritual bathing, and not to leave taps running unnecessarily. Using energy-efficient bulbs and setting air conditioners to moderate temperatures significantly reduces the load on electrical networks.

hajj carbon footprint

A vast majority of Hajj pilgrims are not aware of the innate nature of environmentalism within Islam.

4. Responsible Waste Management

Waste accumulating during the Hajj season can harm animals and pollute the air and water. Therefore, every pilgrim should carry a special bag to collect their personal waste and commit to disposing of it in designated places, separating recyclable waste whenever possible. Even a simple act like picking up trash from the road and disposing of it in the appropriate place is a righteous deed with great reward.

5. Supporting Environmental Initiatives

There are many campaigns and initiatives aimed at making Hajj more sustainable, such as environmentally-friendly food distribution initiatives or tree-planting campaigns in Mecca and the holy sites after the Hajj season.

Supporting these efforts, whether through direct participation or by spreading awareness among colleagues, contributes to expanding their positive impact. Some organizations also provide certificates of volunteer participation that can motivate pilgrims to actively engage.

6. Good Intentions and Following The Prophet’s Sunnah

A vast majority of Hajj pilgrims are unaware of the innate nature of environmentalism within Islam. The Prophet (peace and blessings be upon him) was a model of moderation and kindness to nature. He forbade extravagance and commanded the removal of harmful things from the road.

ecofriendly-hajj

Let our intention in every action during Hajj be to please Allah Almighty and to be compassionate toward the earth and its inhabitants. Invoking this intention with every small act – such as littering or reducing water consumption – turns simple environmental acts into great acts of worship. Spread awareness among other pilgrims in a kind and considerate manner about the importance of environmental behavior.

Bottom Line

Hajj is a great opportunity not only to draw closer to God, but also to embody the noble values ​​of Islam in caring for the universe. Let us make our Hajj this year a journey of faith and spirituality, while also a message of love and peace for the Earth God has entrusted to us. Protecting the environment during the Hajj season is a religious and moral duty, combining obedience to God and kindness to His creation.

Note: The original Arabic version of the article is available at this link.

Natural Cooling with Evaporation and Night Sky Radiation

Nowadays, architects, engineers and designers are ignoring the potential value of the most basic principles of natural cooling:

  1. Solar control (shade)
  2. Convective cooling
  3. Conductive cooling
  4. Evaporative cooling
  5. Radiant cooling

In the first part of the article, solar control, convective cooling and conductive cooling were discussed in detail. When they cannot provide enough cooling then we may have to make use of evaporation.

Evaporative Cooling

The hottest areas tend to be dry and are ideally suited for evaporative cooling if water is available. When water is limited it can be used sparingly for just personal cooling. In general, direct evaporative cooling is most helpful if the humidity at noon in July is 40 per cent or less.

Many traditional building systems used evaporation-based cooling to great advantage, perhaps with a pool or fountain in the courtyard or in the building, sprinkling the tile or floor with water, or utilizing the evapo-transpiration from landscaping to provide cooling.

In traditional Iranian designs many buildings pull cool air from underground water tunnels, called qanats, with wind towers. This can provide air that is 15°C (27°F) cooler than outside. One of my students said this often worked too well for her and she was often cold even in summer where she worked in Yazd.

Ceramics have a well-established history for use in evaporative cooling in different parts of the Middle East. Maziara jars are porous and capillary flow keeps the outer side moist providing cooling by evaporation of water in the wind flow.

evaporative cooling

Early Anglo settlers in the American Southwest would hang water filled ollas in a doorway or window to help improve the cooling. The Ecooler system from Egypt is a modern adaptation with a ceramic water filled lattice made with modular units that interconnect with a special connector.

ecocooler tiles

Each tile is 33 x 33 cm and 2.7 cm deep. The modular structure enables great flexibility, and users can create a cooling lattice at whatever size and shape they want by fitting together more tiles. Each tile might evaporate 0.25 liters (a half pint) a day. The jars and Ecooler would be filled every evening during peak cooling season.

Patios, sidewalks and other surfaces can be wetted for evaporative cooling. Peter the Great reportedly wetted the foliage of trees to increase summer cooling in St. Petersburg. Wetted fabric or fiber can be used for cooling. In India the solid doors in some areas were removed in summer and panels made of dried khus (vetiver) grass were installed. These were wetted by sprinkling or with an automatic drip or tipping trough that rolled over when full to wet the pad and create a cool air flow.

Similar practices can be found in Iran and other parts of the Middle East. In Rajasthan the grill might be used in place of a door and wetted with rose water. The blades of the large ceiling fans in India were sometimes wetted as well. Tents were wetted in some areas to keep occupants more comfortable. Wetted sheets were hung in windows to provide cooler air. Desert dwellers sometimes wrapped themselves in a wet sheet for a cooler night.

In the hot Southwestern desert in the 1930s many people fitted burlap covered boxes over windows. The burlap was wetted and cooled air was blown into the house with a fan. By 1933, thousands of homemade drip type coolers were in use. In 1939 two University of Arizona professors, Martin and Paul Thornburg, put out an excellent extension bulletin on making an evaporative cooler. A fan draws outside air through pads soaked with water. The evaporation of water lowers the temperature of the air. This cooled air is blown through an opening into the building with ceiling or wall vents. Unlike refrigeration systems which recycle air within the home, coolers blow large volumes of fresh cooled outside air into the living areas. This air needs to be vented from the home.

These more powerful modern systems provided more cooling but use more water. The Arizona Department of Water Resources estimated that a typical Tucson household cooler uses a year-round average of 61 liters (16 gallons) a day for evaporative cooling. Research by the Office of Arid Lands Studies at the University of Arizona and the Water Services Department monitored evaporative coolers in 46 homes. They found water use could be as high as 29 liters (7.6 gallons) an hour at a time when the typical home was using 1,600 liters (427 gpd) for all uses.

The use of evaporative cooling declined in the US even though it can save energy in dry climates. Evaporative systems are very competitive in terms of first cost and provide significant reductions in operating energy use, as well as peak-load reduction benefits. Innovative designs can provide even greater savings but have not been pursued.

The Davis Energy Group developed a two-stage system that could reduce energy use 90%. The Speakman Company developed a commercial model of this system. The OASys™ indirect/direct evaporative cooler contains an Indirect Cooling Module, that first cools incoming fresh air without adding moisture. The air then passes through the Direct Cooling Module and enters the space and then exits by roof vents or other openings. The small amount of water used in this process is renewed periodically by a self-purging reservoir. The key to OASys™ is a unique heat exchanger combined with a single pump/blower. The unit produces up to 3.5 tons of cooling while using less than 600 watts for an energy efficiency equivalent to better than 40 SEER, almost four times better than the US Department of Energy standard.

Architects can utilize evaporation for more powerful cooling without electricity. The Environmental Research Lab in Arizona developed a very effective cooling system with a downdraft evaporative cooling shaft and updraft exhaust shaft at the other end of the building.

downdraft evaporative cooling system

I visited this house and it worked very well. In India evaporative cooling is still important and even office complexes may be designed for natural cooling. Industrial systems often use cooling towers, where evaporation of water is used to cool process water for fan coils or direct contact. Home size cooling towers have rarely been used, but can be effective and low energy use if a PV powered pump and fans are used.

Evaporative cooling can also be provided with an indirect evaporative cooler. Several commercial models are sold, including the EvaPolar Coolator 8 and Seeley Internationals Coolerado. Large units are available for commercial buildings. These all provide the advantage of powerful evaporative cooling without raising indoor air humidity. Two airstreams are involved-cool dry air is supplied to the house and a secondary air stream is cooled by evaporation that is exhausted outside after passing through a heat exchanger. Improved models using can chill air to near or below the wet bulb temperature using half the energy of an air conditioner! In Jaipur for example the wet bulb is 27°C (81°F). Installation is easy and they are quiet, efficient and durable. In areas with high mineral content water rainwater may be better to avoid mineral buildup. Size, performance and installation details and availability vary

Direct evaporative coolers (sometimes called swamp coolers) use evaporation of water from a pad to reduce outside air temperatures to a comfortable level for indoor comfort. These can be very effective in areas with low humidity, and may be run with solar panels. One commercial unit for livestock uses a pad mounted on a drum which rotates through a pan of water. On very humid days, like the monsoons of Arizona, direct evaporative coolers provide less relief.

Misters can provide evaporative cooling for outside spaces and intake air. They come in a range of prices and effectiveness. The best systems use very high pressure and metal fittings to produce a very fine fog. The cheapest systems are all plastic and use just standard water pressure, they make big drops and are not as reliable. The best compromise may be a medium price system with a booster pump and metal fittings, running at 700-1400kp (100-200 psi). Misting systems can provide cooling comfort for a courtyard or exterior space as well as cooling for the building. They do require regular attention. A personal mist can be made with a spray bottle, This is how I survived work in the hot desert without a truck AC system.

Landscaping with larger trees can provide very powerful evaporative cooling and solar control. Tests showed temperature reductions of 12°C (22°F) with full tree shade, dropping temperatures from 42°C (108°F) to 30°C (86°F) in a test trailer. The cooling effect of landscaping can be enhanced by spraying or sprinkling. Evaporative cooling doesn’t leak ozone layer killing or global warming gases like air conditioners do.

Radiant cooling

Radiant cooling results when the incoming direct and indirect radiation is less than the energy being reradiated. Our thermal comfort includes radiant exchange with our surroundings. If there are cool surfaces we can be comfortable with higher air temperatures. The planet is also exchanging energy all the time. During the day incoming shortwave radiation from the sun dominates. At night the long wave radiation from earth to deep space exceeds the counter-radiation from molecules and particles in the atmosphere. Global warming is in part a result of reductions in the radiant sky cooling effect from increasing concentrations of CO2 and other radiation blocking gases and moisture.

Radiant cooling works because the night sky temperatures may be 5.5-22°C (10-40°F) or more below air temperature. F. A. Brooks measured a night sky radiant cooling driven air temperature of -2°C (28°F) with frost on straw covered ground near Sacramento after a daytime high of 37°C (98°F). The Persian yakh chal uses night sky radiant cooling to make ice. In my tests the temperature drop was lare enough to make ice with air temperatures almost 10°C. Most of the net outgoing radiation occurs to the cold night sky, but radiation to space also occurs during the day. A cool spot was found at a compass point opposite the sun and approximately at a right angle. This cool spot in the sky was 22°C (40°F) cooler than air temperature at 3:30 PM in a test in the low desert of California. These observations led to innovations in shade structures for animals. Studies suggested animals would take advantage of the cool spot in how they locate themselves in relation to shelter.

Many traditional buildings with high mass roofs benefit from night sky cooling. Without it they could become even hotter during the day and at night. The thermal lag in high mass roofs slows energy transfer through a thick roof and helps makes it livable inside during the day, but hotter at night. High mass roofs of concrete, adobe, or with roof ponds, with operable insulation can provide the functions of coolth collection and storage with one element. This might be done with bags of straw spread in the morning and rolled back at night.

Innovative designs improved performance. Harold Hay’s Skytherm™ houses using bags of water on the roof covered with movable insulation during the day and opened at night.

radiation cooling

The water for the roof pond is typically placed in bags on a metal roof support system that doubles as a ceiling for the room below. This ensures excellent radiant transfer from the water bags to the people below. The water will circulate so the hottest water is on the radiating surface and the coolest water is in contact with the ceiling. Open water can be added to provide the added benefit of evaporative cooling. The roof water bags can also be used for heating in the winter by reversing the operation, opening the covers during the day and closing them at night. The radiant transfer with a high mass ceiling makes for very uniform and comfortable temperatures.

The roof pond concept developed by Jon Hammond with engineering help by Loren W. (Tod) Neubauer at Living Systems used insulated panels that could be opened at night. This design used hydraulic rams to tilt up reflective, insulated roof panels. On this well insulated and passive solar oriented building they also added more thermal mass to store more coolth and to provide more cool surfaces for radiant exchange cooling for comfort. Performance fully met the expectations of the clients, who were from Alaska and wanted it cool even in summer. A backup bicycle powered pump could operate the panels if the power went out.

We conducted tests of the Cool Pool concept in both Sacramento and Indio, California. These used fixed shades with cool north sky exposure. The Sacramento test building was set up at the State Fair in an asphalt parking lot. It was hot! The cool pool room stayed cool even with just a drape instead of a door.

cool pool

Sacramento State Fair Room in asphalt  parking lot with plastic film strip door

Average Cool Pool Temperature      24°

Average Air Temperature                33°

Average Low Air Temperature         25°

Average High Air Temperature        39°

Our Indio test in the low desert reached an outside air temperature of 38°C (100°F), but just 24°C (75°F) in the cool pool.

The “Night sky” cool roof system pumps water to a white roof for evaporation and night sky radiant cooling. A manufacturing facility in Vacaville found this system provided a 67% energy cost saving with a payback of 2.5 years. Recent research has begun to evaluate more of these systems and to develop design parameters. The Davis Energy Group installed a large system in Los Angeles on a 2,554 m2 (27,500 sf) building with projected energy savings of 50%.

In Australia, a similar system is being used to provide radiant cooling through floor slabs and ceiling beams. This type of cooling would also integrate very well with the increasing use of large thermal masses in commercial buildings for cool thermal energy storage. The cool water in tanks or panels can be used for direct radiant cooling for occupants.

Integrated Design for Natural Cooling

These five methods of natural cooling can provide full comfort throughout the summer in many areas. The cost of natural cooling will be below the cost for mechanical air conditioning systems particularly when the natural cooling system is an integral part of the house design and solar heating system. Solar control is the most cost effective option. Shade can be provided by roof overhangs, awnings, and many kinds of shades. Direct and indirect evaporative coolers can provide comfort without high cost for installation and operation. The most economical system for convection cooling is to optimize ventilation. Windows and doors are a first start.

downdraft evaporative cooling system

Down draft evaporative cooling can be done for homes or large buildings. Evaporation from fountains is cooling and soothing. Mist systems require some maintenance but help cool homes, courtyards and patios. Costs can range from $30 to more than $1,000 for a mist system. Hard water can clog mister jets. More complex evaporation based cooling systems with down draft cooling, and or tanks or pools that add night sky radiation cooling can provide comfort in deserts. In areas with limited water supplies night sky cooling may be key.

One of the great benefits of most natural cooling options is that they will work even if the power is off after a natural or social disaster. Natural cooling can provide significant reductions in peak electrical demand at very low cost. In the Central Valley of California every fifty square feet of west facing glass can increase the heat load at the peak energy demand point on a summer afternoon enough to require 1 ton of air conditioning. This in turn requires the addition of approximately two kw of capacity to the system electrical generating capacity. The approximate cost of the increased electrical generation capacity and air conditioner is around $2,000.

Alternatively, a bamboo shade could be purchased and installed for about $50 dollars, essentially eliminating the need for the addition cooling capacity. Evaporation can also be used in a dual stage system with supplemental air conditioning.

Further reading

Bainbridge, D. A., Haggard, K. 2011. Passive Solar Architecture. Chelsea Green. 294 p.

Bainbridge, D. A. 1978. Natural cooling: practical use of climate resources for space conditioning in California. pp. 138-153. In Clark, E. F.and de Winter, F. eds. Proceedings of the 3rd Workshop on the Use of Solar Energy for the Cooling of Buildings, San Francisco, California, US Department of Energy/University of Colorado, Boulder, CO.

Bainbridge, D. A. 1978. The Indio cool pool experiment. Alternative Sources of Energy.32:6-10.  https://www.academia.edu/127442568/The_Indio_cool_pool_experiment.

Bourne, R. 2015. PV indirect-direct evaporative cooling. Davis Energy Group. RETD California Energy Commission. 500-2013-071.

Goss, J. R. 1956. Cooling of Water by Nocturnal Radiation and Evaporation. Master of Science Thesis in Agricultural Engineering. University of California Davis.

Haggard, K., Cooper, P. and Rennick, J. 2005. Chapter 3. Natural Conditioning of Buildings in Elizabeth, L. and Adams, C. eds. Alternative Construction: Contemporary Natural Buildings.Wiley.

Kelly, C. F., Bond, T. E. and Ittner, N. R. 1975. Cold spots in the sky may help cool livestock. Agricultural Engineering, October.

Niles, P. W. B. 1976. Thermal evaluation of a house using a movable-insulation heating and cooling system. Solar Energy. 18(5):413-419.

5 Effective Ways to Improve Environmental Education

Education exists to prepare people for the world and for the future. Because of it, teaching students about the environment is essential for their personal development. We all depend on the environment, which makes it our obligation and our life purpose to sustain and improve it. This takes environmental education to a whole new level. This is why teachers bring nature into classrooms or teach their classes outdoor. Environmental education doesn’t cease when the classes end, but at least during formal education, it can be tailored to prepare and make students aware of the importance of environmental preservation.

environmental-education-arabic

Benefits of Environmental Education

Before we show you the best tips that would boost such education, it is important to understand the benefits this education has. Here are some of the many reasons why environmental education is important in the development of each student:

  • Enhances creative and critical thinking
  • Gives students skills to apply in the real world
  • Prompts actions to improve and boost the environment
  • Teaches about ecological issues, but also political, cultural, and economic ones
  • Sparks the creativity and imagination
  • Encourages a healthier lifestyle
  • Strengthens a community
  • Reduces nature deficit disorders
  • Encourages and promotes tolerance between cultures

How to Improve Environmental Education

Education that is focused on the environment can be very successful and yield amazing results only if it is taught properly. Here are some tips on how to do this.

1.   Give Students More Responsibility

If educators and parents take over the entire burden in terms of environmental preservation, students won’t be prompted to take action for their environment. There should be much more to environmental education than just classes that promote environmental awareness and homework that requires some writing.

environmental-education

After all, you can always pay people to do your homework and in many cases, students actually do this. Environmental education isn’t about the writing skills of an individual – it’s about putting students to action and making them do some work. If you give them more control over the projects and ask them to actually do something, they are much more likely to understand the purpose of environmental education.

2.  Help Them Get a Sense of It

Students can hardly understand the environment only by reading about it in books. No one says that you should take them to complete big projects, but simply going outside with them is going to give them a better sense of what they are learning.

3.  Get Help

This type of education isn’t your ordinary ‘read some books’ or ‘write some papers’ education. When you’re teaching a thing of such grand and varied importance, you need the help from organizations, citizens, and even the local government.

If you really want to improve the education, it is time to pair up with people who specialize in doing so. For example, the US has a National Environmental Education Agency that partners with educators and students to inspire and boost the environmental education. You can also find many school programs, field trips, and other activities that would help you with this matter.

It is time to start connecting and asking for help. Once you do, you’ll realize that the numbers of people who are environmentally-aware and care about this are very numerous. Knowing what they know, they’ll be more than willing to help out in shaping the youngest minds.

4.   Provide Outside-Class Opportunities

If you manage to make students more environmentally-aware and create useful and interesting activities to promote their environmental education, they are bound to show interest to actually make something for their environment.

earth-day-climate-literacy

Environmental education is the foundation for progress.

It would be a shame if they do, but you haven’t provided them with opportunities to actually use the knowledge they’ve attained.

With the help of all those organizations you reached out to, create opportunities for students to care and act in their environment in case they show interest to do so. And once they do, support them and keep their excitement growing. You can’t really expect students who’ve just become environmentally-aware to find their own opportunities to use this knowledge right away. Unless you do, they’ll probably lose the interest.

5.   Be a Role Model

One of the biggest flaws of the educational system is that educators are very bad role models when it comes to environmental preservation. You can’t really teach students that the nature should be kept and preserved if you litter, smoke, or drive a car to work.

If you really want to make a difference, become a role model. Let students see that you’re environmentally aware too. They’re more likely to follow your footsteps if you do, or ignore the environmental problems if you don’t care.

Final Words

The young generations are eager to learn and develop and it is up to the educational systems to guide them on the right path. If you want them to be environmentally aware and promote the environment’s health, you need to boost the ways that you use to teach them.

عادات سهلة صديقة للبيئة للطلاب: كيف تحدث فرقاً

لم تعد الاستدامة مسألة اختيارية. فمع خطر التغير المناخي والتدهور البيئي الذي يهدد العالم، يجب على الناس الآن تطوير ميولهم الخضراء لعكس تأثيرهم. ويتحمل الطلاب على وجه الخصوص مسؤولية كبيرة في جعل العالم أكثر استدامة. فمن خلال غرس عادات خضراء بسيطة في الحياة اليومية، يمكن للطلاب أن يقللوا من آثار الكربون الخاصة بهم أثناء تقديم مثال يحتذي به الآخرون ويتبعونه.

اختيار وسائل النقل المستدامة

أحد أسهل الأشياء التي يمكن للطلاب القيام بها لضمان الاستدامة هو اختيار وسائل نقل أكثر مراعاة للبيئة. فبدلاً من قيادة السيارة أو استخدام خدمات النقل، يمكن للطلاب المشي أو ركوب الدراجات الهوائية أو المشاركة في رحلات النقل الجماعي أو استخدام وسائل النقل العام. لا يقتصر ذلك على الحفاظ على الكربون فحسب، بل يساعد أيضاً في تطوير عادات صحية أكثر. وفقاً لوكالة حماية البيئة (EPA)، يساهم قطاع النقل بحوالي 29% من الغازات المسببة للاحتباس الحراري في الولايات المتحدة. تمتلك غالبية الكليات والجامعات مراكز لمشاركة الدراجات كما أنها تشجع الطلاب على استخدام وسائل النقل العام.

sustainable transport

التقليل وإعادة الاستخدام وإعادة التدوير

تُعدّ ثلاثية التقليل وإعادة الاستخدام وإعادة التدوير حجر الزاوية في الاستدامة. يمكن للطلاب البدء بتقليل الهدر باستخدام زجاجات المياه وأكياس التسوق وأكواب القهوة القابلة لإعادة الاستخدام. ويجب عليهم قدر الإمكان شراء الكتب والملابس والأثاث المستعمل مع التركيز على تقليل توليد النفايات. كما أن إعادة تدوير الورق والبلاستيك والمخلفات الإلكترونية أمر بالغ الأهمية لتقليل المساهمات في مكبات النفايات. وتوجد برامج إعادة التدوير في العديد من الجامعات والكليات، وبالتالي على الطلاب الاستفادة من هذه المراكز.

توفير الطاقة والمياه

يعد الحفاظ على الطاقة والمياه من العناصر الأساسية للاستدامة. يمكن لإجراءات بسيطة مثل إطفاء الأنوار عند الخروج من الغرفة، وإطفاء الأجهزة الإلكترونية عند عدم استخدامها، واستخدام الأجهزة الموفرة للطاقة أن تحدث تأثيراً كبيراً على التوفير في الطاقة. الأنشطة الموفرة للمياه مثل تقليل الاستحمام وإصلاح التسريبات وتركيب الأجهزة الموفرة للمياه توفر الموارد أيضاً. يمكن لقاطني السكن الجامعي والغرف المشتركة مناقشة عادات توفير الطاقة مع زملائهم في السكن لتحفيز شعور جماعي بالجهد الذي يؤدي إلى تقليل استخدام خدمات المرافق. يمكن للطلاب الرجوع إلى موقع Energy Star على الإنترنت للحصول على المنتجات المؤهلة بشهادة الاعتماد بالإضافة إلى نصائح التوفير.

sustainable schools initiative

Eco Clubs provide an opportunity to students to participate in environmental projects and activities.

تبني اختيار الطعام المستدام

خيارات الطعام لها تأثير كبير على البيئة. يمكن للطلاب ممارسة عادات غذائية أكثر مراعاة للبيئة من خلال استهلاك الأطعمة النباتية، والحد من هدر الطعام، وشراء الأطعمة المزروعة محلياً. في دراسة أجراها برنامج الأمم المتحدة للبيئة (UNEP)، يؤدي إنتاج الغذاء إلى ما يقرب من ثلث انبعاثات غازات الاحتباس الحراري في العالم. كما أن الشراء من المزارعين المحليين واستخدام المنتجات العضوية يمكن أن يقلل من الأثر البيئي. تقدم كافتيريات الجامعات الآن بشكل متزايد خيارات نباتية، ويمكن للطلاب أيضًا المشاركة في برامج استرداد الطعام، مما يوفر فائض الطعام للفقراء. وتوفر مصادر ثمينة مثل ”المائدة المستدامة“ (Sustainable Table) معلومات كاملة عن الزراعة المستدامة والخيارات الغذائية المسؤولة.

دعم العلامات التجارية الأخلاقية والمستدامة

يساهم الاستهلاك غير الأخلاقي والموضة السريعة في التلوث البيئي والهدر بشكل كبير. يجب على الطلاب أن يبذلوا قصارى جهدهم للعثور على العلامات التجارية الملتزمة بالاستدامة والتصنيع الأخلاقي. إن اختيار ماركات الأزياء الصديقة للبيئة، واستخدام مواد مدرسية مستدامة، ومراعاة عادات التسوق يمكن أن يكون له تأثير دائم على البيئة. تنتج بعض الشركات الآن ملابس من مواد معاد تدويرها أو تمارس عمالة نزيهة، ويمكن للطلاب التسوق منها.

المشاركة في جهود الاستدامة في الحرم الجامعي

توفر العديد من الكليات والجامعات مشاريع خضراء ونوادي بيئية وبرامج استدامة تشجع الطلاب على المشاركة فيها. يمكن اكتساب خبرة عملية في الحفاظ على البيئة من خلال أنشطة مثل غرس الأشجار، أو حملات التنظيف، أو حملات التوعية بالطاقة المتجددة. بعض الكليات لديها شهادات خضراء لمساكن الطلاب، والتي تعترف بالسكن الطلابي الذي يتبع ممارسات مستدامة. كما يمكن للطلاب أيضاً الحث على اتباع سياسات خضراء داخل الحرم الجامعي، مثل الحد من المواد البلاستيكية ذات الاستخدام الواحد أو إضافة برامج التسميد العضوي.

environmental-education

التثقيف ومناصرة الاستدامة

يبدأ التغيير بشكل أكثر فعالية من خلال التوعية. يمكن للطلاب إطلاع الطلاب الآخرين على كيفية ممارسة الاستدامة، وبدء مناقشات حول المناخ، وتحريك حملات التوعية من أجل تغيير السياسات في مؤسساتهم التعليمية. بالإضافة إلى ذلك، يمكن للطلاب الاستفادة من الانضمام إلى منتديات الاستدامة عبر الإنترنت كوسيلة لمواكبة أحدث الاتجاهات في مجال الحفاظ على البيئة. تقدم مواقع مثل The Nature Conservancy موارد تعليمية وشبكات تطوعية وإجراءات ملموسة للأفراد الذين يرغبون في المساهمة بشكل إيجابي في الاستدامة.

تقليل حجم البصمة الرقمية

يتجاهل غالبية الناس الثمن البيئي للاستهلاك الرقمي. تستهلك معالجة البيانات، والاستخدام المفرط لوحدات التخزين السحابية، وبث مقاطع الفيديو كمية كبيرة من الكهرباء. يمكن للطلاب تقليل بصمتهم الكربونية الرقمية من خلال إلغاء الاشتراك في رسائل البريد الإلكتروني غير المرغوب فيها، وتقليل دقة بث مقاطع الفيديو، وحذف الملفات القديمة المخزنة على الأنظمة السحابية. ويُعد استخدام محركات البحث مثل Ecosia، التي تزرع الأشجار مقابل كل عملية بحث، طريقة بسيطة أخرى لإظهار الدعم للاستدامة البيئية.

الخاتمة

الاستدامة عملية لا تنتهي وتتطلب جهداً متواصلاً. من خلال تطبيق عادات بسيطة صديقة للبيئة، يمكن للطلاب التأثير بشكل كبير على مجتمعاتهم والعالم بأكمله. من وسائل النقل إلى الاستهلاك الواعي و النشاط البيئي، كل خطوة بسيطة لها أهميتها. وبصفتهم قادة المستقبل وفاعلي التغيير، يمكن للطلاب إحداث تأثير على عالم أكثر اخضراراً – عبر اتخاذ القرار الصحي في كل مرة.

ترجمة: لونا المومني

 أستمتع بالعمل على مشاريع تُحدث تغييرًا حقيقيًا ومستدامًا في المجتمعات. من خلال دراستي وخبرتي في التخطيط الحضري والاستدامة، أتيحت لي الفرصة للتعاون مع أشخاص من خلفيات مختلفة والمساهمة في مبادرات مؤثرة. أواجه التحديات بعقلية عملية تركز على الحلول، سواء من خلال البحث، التنسيق، أو العمل الميداني. أؤمن بأن التقدم يتحقق من خلال التعاون والمرونة والإصرار، وأسعى دائمًا لتطوير نفسي والمساهمة في إحداث فرق إيجابي.

Note: The English version of the article is available at this link.

7 Methods To Reduce Heating And Cooling Costs At Your Home

Did you know that your AC can increase your home’s energy consumption by nearly 50%? And are you aware that you can lessen the impact of the air conditioner by doing some major or minor changes in and around the home? You can achieve reduce heating and cooling expenses at your home by following these seven steps:

1. Invest in a Programmable Thermostat

When it comes to saving money when trying to heat and cool your home, you will benefit more from investing in a programmable thermostat. It is not uncommon to forget turning off the system or set the temperature to a certain degree, that is why a programmable thermostat is an ideal feature to include in your air conditioning system.

You can set it to automatically control and manage the heating and cooling of your home when in or away. The thermostat can shut off the system during the day and start about an hour or so before you get home.

how to reduce heating and cooling costs at home

It works in different ways. For instance, it can stop the compressor once the room temperature reaches a set level so that the AC does not keep working when not needed, thus aiding in lowering energy consumption.

To set up the thermostat for maximum savings, have run at around 78° Fahrenheit (25° Celsius) when you are indoors and running at a high temperature when you are not home. With the AC also being able to expel indoor humidity, it is possible for the home to feel cooler when its 25° outside.

2. Clean Your AC Filters Regularly

Cleaning the AC is the next essential thing that helps lower the power demand and electricity bills. Dust, dirt, and fiber will find their way into the system and clog up the filter making the AC work twice or thrice as hard as it should to deliver the desired temperature setting.

Cleaning the air conditioning system, which will include repairs and replacing worn out parts such as the filter. Cleaning should be done every other month.

3. Close All The Vents In The Lower Areas Of Your House

Hot air rises pushing the cold air down, that is why the upper floors in a storied home will feel relatively warmer while the ground floors are cool, and the basement will feel like the coldest place. You can manage the flow or hot and cold air in your home by closing the vent in the lower rooms so that you can redirect the cold air to the warmer sections. It will help even out the temperatures, thus lowering the need to run the AC for an extended period.

4. Use Ceiling Fans for Air Circulation

Installing ceiling fans can help reduce the dependence on the heating and cooling system, thus aid in saving energy. For instance, the fans can help in the circulation of air during the warmer days taking away the need to use the AC. It can make a room feel 8 degrees cooler by keeping the air moving.

5. Schedule HVAC Check-up Annually

You should have your AC unit inspected by HVAC experts regularly. The technicians will examine the entire system and remove accumulated dust, dirt, and debris that may lower is efficiency. They also will do repairs and replacements where necessary. You should not think of their services as an added expense to that of the heat and cooling of your home. The costs of what they offer are offset by having a low-energy demanding air conditioning system in your home.

Moreover, you will be paying for a service once a year and compared to the monthly bills you face when heating and cooling your home. To reduce energy bills why not have an energy audit?

energy conservation guide

6. Seal Crevices and Cracks

Sealing up cracks and crevices in and around your windows and doors can help increase the efficiency of your AC. You can do this if you have a caulking gun, and you do not need to have any exceptional skills. Seal up such spaces will keep the hot air from escaping and the cold air from finding its way into your house. Applying weather stripping for the doors and windows will come in handy in your efforts to lower the energy bill.

7. Close The Drapes

Vehicles get very hot when left out under the sun. The same effect can also be seen on homes. Direct sunlight that enters through the windows, roof lanterns and skylights is converted into heat once it is inside the house. So, drawing back the drapes and blinds for the windows that face west or east (direct sunlight) can help manage the indoor temperatures during the day, thus lower the need to run the AC.

Staying Cool with Natural Cooling – Traditional Natural Cooling Techniques

Natural cooling is particularly important as an economical method of keeping people comfortable and safe from extreme heat even in areas where there is no electricity or when the power grid fails. It also helps reduce peak loads and lowers the stress on generation and distribution systems. Natural cooling has been utilized for centuries and has only recently been ignored, most obviously since 1950, as mechanical air conditioning and electricity became artificially cheap. As a result architects, engineers and designers began to ignore the potential value of even the most basic principles of natural cooling.

stack ventilation

The traditional cooling methods are:

  1. Solar control (shade)
  2. Convective cooling
  3. Conductive cooling
  4. Evaporative cooling
  5. Radiant cooling

These five methods of natural cooling can provide cooling and considerable comfort throughout the summer almost anywhere in the world. A better understanding and application of natural cooling options is needed because some studies suggest a half million people die from heat disorders every year.

Summer heat is a problem even in advanced countries. The monthly cost of running an air conditioner in an older home during the summer months can run as high as $350 in Arizona and people who can’t afford to fix or run their AC system are at risk. In the Arizona desert the Maricopa county medical examiner’s office confirmed 602 heat deaths in 2024 and was still investigating eight others. In Europe a heat wave in 2023 killed an estimated 47,000 people.

This article covers the first three well-proven techniques for natural cooling while the second part of the article will explore powerful cooling with evaporation and radiant cooling.

Shade (solar control)

The most cost-effective step in natural cooling is solar control. One of the most important factors for solar control is proper building orientation with very few windows on the east and west walls, and most windows on the south and north (in the northern hemisphere). Windows should be shaded or covered in summer with overhangs, awnings, exterior shades or panels. Awnings can reduce solar heat gain from windows up to 65% on south-facing windows and 77% on west-facing windows. A roof overhang can provide useful shade at low cost. This also allows the lower winter sun in for heating.

natural cooling

The simplest and cheapest method for exterior shading is often to hang a shade-cloth, canvas, or bamboo shade outside the window or wall supported by the roof overhang or an exterior valance. Shade cloth as an exterior screen wall can also provide shade. Shade cloth can provide low cost shade on all window orientations and is less likely to get blown around. A light colored shade cloth will be less obtrusive, but get a reasonably high density shade (50%). Exterior Venetian blinds are used in Germany, Switzerland and Austria and these can provide flexible solar control and reduce heat gain compared to internal blinds.

A space for venting should be left at the sides or top to prevent buildup of a pocket of hot air. This kind of system provides good protection for a modest investment. Where high winds are a problem, it is necessary to provide a ground anchor, preferably with an elastic shock cord, to prevent flapping and possible damage to the shade. The shade can be rolled up in the fall and stored.

Many traditional designs of outdoor space were effective for improving comfort. From the shaded streets and souks of desert cities to the toldos, fountains and landscaping of courtyards in Italy. Tall, narrow alleyways also provide climate protection. Traditional home designs sometimes had a summer and winter pattern for living to take advantage of cooler spaces in summer. Shade cloth and shade screen (with many tiny louvers) that also serve as an insect screen, can be used on windows. For east and west facing windows aluminum foil can be placed on the window.

Building colors matter also. A white roof in our studies was 25°C degrees cooler than a black roof. White wash could be used. This is a solution of slaked lime and will form a thin layer of calcium carbonate on the walls. If straw is being dried on a flat roof it can help reduce the temperature spread out and held down with a net or shade cloth. If you can afford it add a shade a few inches above the roof. Or if you can afford it add a second roof. Thats what I did to my trailer. Roof temperatures can be lowered even more by shading, sprinkling, misting. Watering adjacent paths and patios can also cool temperatures.

Convective Cooling (wind)

Convective cooling techniques were highly developed in traditional architecture and building. A visit to a plantation home in the Deep South or homes in many desert areas will enable you to see living textbooks for natural ventilation. The tall windows, tall doors, vents, tall ceilings, cupolas and orientation of these buildings were all refined to produce the greatest possible comfort without air conditioning. Cooking was done outside.

The wind or breezes, stack ventilation by thermal density differences (warm air rises), or assisted ventilation with a solar chimney, down draft design, fans, or a whole house fan can all be used. The most basic form of ventilation uses windows for cross flow. Cross ventilation is possible because the pressure on the upwind side of a building increases, and the pressure on the downwind side is reduced. This pressure differential drives the air flow across and through the building. While it is often shown as a simple arrow flowing through the building air movement can be very complex. A building is rarely the one room shown in text books, so the flow paths actually develop across a set of rooms, hallways, stairwells, and openings.

The location and shape of furniture and fixtures, the height of ceilings, door undercuts or slots above doors, transom windows and vents may all play important roles in flow patterns. Subtle changes in shape from hard edges to rounded edges or vanes can also improve flow patterns.

With operable windows people can adjust to different wind speed and directions. They can also shut windows if a dust storm is likely. This is true for homes and offices. People will open windows if given the chance.

For effective cross ventilation there should be large inlets and outlets for air movement. These can be either windows, vents, or screened or louvered doors. For better air flow the openings on the windward wall should connect with flow paths to openings on the downwind wall. Multiple windows can provide better cooling across a room or building than just large windows placed opposite each other.

natural cooling methods

In traditional designs, windcatchers were often used to augment breezes. They have proven themselves for centuries. These are very effective and can be seen in is use today in Iran. The air flow should contacts the human body to create the desired cooling. Low screened inlets and high exhaust vents are needed. The type of opening and placement of inlets and exits also influences air flow. Taller ceilings with transom windows or vents over the interior doors can help vent cave type rooms. If hallway ceilings are as tall or taller than rooms the flow can be further enhanced and easily assisted with a hallway mounted fan. Doors can be undercut to allow air flow.

windcatcher natural cooling

Ventilation cooling can be particularly effective if the night air temperature drops significantly. You just open the windows and doors to let breezes cool the inside at night and store the coolness or “coolth” using the thermal mass of the house (adobe, brick, ceramics, wallboard, tile, water walls, etc.). The potential for night ventilation can be estimated from the high and low temperatures, dry and wet bulb temperatures, the prevailing wind patterns, and the diurnal temperature differences. In Davis July daytime high averages 34.4°C (94°F) but only 19.4°C (67°F) at night. A daytime temperature in Tucson, Arizona can be as high as 36.7° (98.6°F) in August, but a tolerable 23.9°C (75°F) at night. In August the daytime temperature in Petra, Jordan is 36.1°C (97°F) but only19.4°C (67°F) at night.

Thermal mass is needed to store nighttime “coolth” for the coming day. Water, stone, bricks or adobe can provide the needed thermal storage. The cool air from vents or windows can be most effective if it flows by the surface of the thermal mass. Thermal mass for night ventilation driven cooling is most effective when it’s widely distributed through walls, ceilings and floors. More surface area helps, because the heat exchange rate is fairly slow between air and mass. Water is more effective than masonry, concrete or stone. A steel tank with water can exchange energy more rapidly thanks to internal circulation of the water. Water walls with larger surface areas, such as corrugated vertical pipes are also a good option.

In recent years phase change materials (PCMs) have made it to market in some areas. These are light weight and effective. They absorb and release latent heat when they melt and solidify. This can enhance thermal energy storage and temperature regulation with less weight than water. Natural ventilation with PCMs has resulted in energy savings of up to 90% in some climates. More often the saving might be just 30%. Installing PCM above suspended ceilings resulted in up to a 25% reduction in peak cooling loads for office buildings in one test. PCMs have also been embedded in wallboard and insulation. By modifying the crystal size and shape, the temperature at which the material changes phases can be adjusted to suit specific building needs.

For example, Dörken, a German-based company, sells Delta Cool 24, a salt hydrate in several forms. Thermal mass has also been ignored in most building codes but was included in building code regulations we developed for the City of Davis to take advantage of cool night temperatures. These were replaced my a very weak state code.

Cross ventilation alone may be sufficient to provide comfort throughout the day in a well insulated building with good solar control. Cross ventilation is more likely to be effective in open terrain for lower buildings. Tall thin buildings were often used in traditional designs for good air flow. Cross ventilation is typically more powerful than stack ventilation, but it varies with wind direction, wind speed and turbulence and building shape. Grills or louvered vents can be used to provide ventilation without a loss in privacy or security. The magnificent grills in the MidEast, Spain and Mexico served this purpose.

Where strong winds or rain are common when cooling is needed careful detailing can reduce the impact of the wind yet still provide air flow. A sill vent allows good ventilation without having drapes and other objects blowing around. It also provides protection from driving rains and allows an uninterrupted view through the glass without the visual interference of louvers. Adding a bay window with a horizontal sill vent can provide excellent ventilation that won’t be adversely affected by high winds or rain.

Allergy problems that might be created by the introduction of mold, fungi spores, pollen, dust or smog are best dealt with by using filters. Free flowing filters may cover the entire window or vent area. These will reduce air flow so vent area may need to be increased.

Cross ventilation can be difficult to model accurately because it depends on wind speed, wind direction, window operation, furniture and fixtures, human actions, and distribution of people and activities in a building. Detailed wind data are not likely to be available for a specific site, and topographic features, landscaping and other buildings may mean that the winds on site are not similar to the nearest weather station data. It is worth thinking about it because cross ventilation works, it is inexpensive, and people like the sense of control they get from being able to open and close windows.

Stack effect ventilation

Hot air is less dense than cool air and will rise, creating air movement in a building with a low intake (cool) and high outlet (hot). Stack ventilation was used in many traditional building designs, and usually included very high ceilings, multiple floors, thin building elements, open stairwells, roof monitors, dormers or cupolas with operable windows. The intake(s) should be as low as possible and from an area with cooler air, perhaps a landscaped area or shaded courtyard with a fountain or from a qanat.

Louvers can be used on intakes to help direct cooling air towards people. The outlet(s) should be placed as high as possible. Performance can be estimated with simple formulas, calculated with software or computational fluid dynamics or tested with models. If well developed design and climate data exist for larger buildings, computational fluid dynamics programs allow for more accurate modeling than in the past.

natural cooling systems

The stack effect can augment or replace cross ventilation. The inlets and outlets should be as far apart as possible in height, with 2 m (6 feet) as a minimum and 5-7 m (15 or 20 feet) preferable. Multiple stories and tall ceilings help air stratification and air flow and improve occupant comfort. Open plans are generally best. Cubicles and partitions can interrupt the flow of window driven cross ventilation. Floor vents can be useful in some cases. Many tropical homes were built on stilts for better air flow.

Ventilation shafts, stairwells or courtyards are well suited for stack effect cooling in larger buildings. Over door transom windows can help maintain ventilation flow paths between rooms while providing security and privacy. Over door vents can be installed even in most residential buildings. To improve air flow I used a small fan in the wall to get more fresh air in a back room.

Building users or owners should be trained and provided with a simple guide to proper operation. This could be printed, placed in a plastic sleeve and mounted in a secure location where users can see it, perhaps on the inside of a closet door. Clear temperature guidelines might be provided with paired thermometers showing exit and intake temperatures to guide operators. The mechanisms for operable inlets and outlets should be well designed and maintained. Although a long pole with a hook can be used to open and close high windows and vents a permanently mounted crank mechanism is better and won’t be misplaced.

Conductive cooling

Cats and dogs are able to find the cool spots on the floor for conductive cooling. This is direct contact with a cooler surface. Not widely used or studied but effective. In our office we had waterbed as part of the thermal mass for heating and cooling. With night ventilation the water bed was very cool in the morning and made for excellent comfort in an afternoon nap.

Using these three cooling options and the two added in Part 2: Evaporation and Night Sky Radiation make it possible to make much more comfortable, safe and secure buildings. They can maintain comfort and safer temperatures without electricity in most cases. This requires integrated design.

Further Reading

Bainbridge, D. A., Haggard, K. and Aljilani, R. 2009. Passive Solar Architecture: Pocket Reference. International Solar Energy Society/Earthscan/Routledge. 90 p.

Ghamari, M., See, C. H., Hughes, D. et al. 2024. Advancing sustainable building through passive cooling with phase change materials, a comprehensive literature review. Energy and Buildings. Volume 312, 114164.

Haggard, K., Cooper, P. and Rennick, J. 2005. Chapter 3. Natural Conditioning of Buildings in Elizabeth, L. and Adams, C. eds. Alternative Construction: Contemporary Natural Buildings. Wiley.

Neubauer, L. W. 1953. Summer comfort. Small Homes Council Circular G6.0:1-7.

Olgyay, V. and A. 1957. Solar Control and Shading Devices. Princeton University Press.

Rempel, A. R. and A. W. 2013. Rocks, clays, water, and salts: highly durable, infinitely rechargeable, eminently controllable thermal batteries for buildings. Geosciences. 3:63-101.

كيف نجعل الحج صديقًا للبيئة؟

مع اقتراب موسم الحج، يتجه ملايين المسلمين من أنحاء العالم إلى مكة المكرمة لأداء مناسكهم المقدسة. وفي ظل هذا التجمع الإيماني الهائل، تبرز أهمية الحفاظ على البيئة والاهتمام بالاستدامة، انطلاقًا من تعاليم الإسلام الذي تحث على حماية الأرض وعدم الإفساد فيها. فكيف يمكن لكل حاج أن يساهم في جعل حجه أكثر صداقةً للبيئة؟

waste generation during Hajj

تقليل استخدام المواد البلاستيكية

عدّ المواد البلاستيكية أحادية الاستخدام من أكبر مصادر التلوث خلال موسم الحج. ملايين الأكواب والأكياس تُستخدم ثم تُرمى، مما يؤدي إلى تراكم كميات هائلة من النفايات. يمكن لكل حاج أن يحمل زجاجة ماء قابلة لإعادة التعبئة، وأدوات طعام شخصية مثل ملاعق وشوك مصنوعة من مواد صديقة للبيئة، وأكياس قماشية بدلًا من الأكياس البلاستيكية. كما يُفضل شراء المنتجات المغلفة بورق أو مواد قابلة للتحلل البيولوجي.

اختيار وسائل النقل الجماعي

النقل الجماعي، مثل القطارات الحديثة التي تربط المشاعر المقدسة أو الحافلات المخصصة للحجاج، يُعد خيارًا مثاليًا لتقليل انبعاثات الكربون، بالإضافة إلى تخفيف الازدحام المروري الذي يشهده الحج سنويًا. كذلك، يشجع الكثيرون على استخدام الدراجات الهوائية الصغيرة داخلن طاقات معينة إن أمكن. والمشي عند الإمكان ليس فقط وسيلة للتنقل بل هو أيضًا عبادة إضافية واتباع لسنة النبي صلى الله عليه وسلم الذي كان يحب المشي.

الاقتصاد في استهلاك المياه والطاقة

مع ارتفاع درجات الحرارة في مكة المكرمة، يميل كثيرون إلى الإفراط في استهلاك الماء والكهرباء. من المهم أن يحرص الحاج على استخدام المياه للوضوء والاغتسال بشكل معتدل، وعدم ترك الصنابير مفتوحة دون داعٍ. ثم أن استخدام المصابيح الموفرة للطاقة، وضبط أجهزة التكييف على درجات حرارة معتدلة، يسهم بشكل كبير في تقليل الحمل على الشبكات الكهربائية.

إدارة النفايات بشكل مسؤول

النفايات المتراكمة خلال موسم الحج قد تضر بالحيوانات، وتلوث الهواء والماء. لذا، على كل حاج أن يحمل كيسًا خاصًا لجمع نفاياته الشخصية، ويلتزم برميها في الأماكن المخصصة لذلك، مع محاولة فصل المخلفات القابلة لإعادة التدوير إن أمكن. إن تصرفًا بسيطًا مثل التقاط القمامة من الطريق وإلقائها في المكان المناسب يعد عملًا صالحًا وأجره عظيم.

دعم المبادرات البيئية

هناك العديد من الحملات والمبادرات التي تهدف إلى جعل الحج أكثر استدامة، مثل مبادرات توزيع أدوات طعام صديقة للبيئة، أو حملات لزراعة الأشجار في مكة والمشاعر المقدسة بعد موسم الحج. دعم هذه الجهود سواء بالمشاركة المباشرة أو بنشر التوعية بين الزملاء يسهم في توسيع أثرها الإيجابي. ثم أن بعض الجهات توفر شهادات مشاركة تطوعية يمكن أن تحفز الحجاج على الانخراط بفاعلية.

hajj carbon footprint

A vast majority of Hajj pilgrims are not aware of the innate nature of environmentalism within Islam.

النية الصالحة والاقتداء بسنة النبي (ﷺ)

الرسول ﷺ كان قدوة في الاعتدال والرفق بالطبيعة. فقد نهى عن الإسراف، وأمر بإماطة الأذى عن الطريق. فلتكن نيتنا في كل تصرف في أثناء الحج أن نرضي الله تعالى، وأن نكون رحماء بالأرض ومن عليها. استحضار هذه النية عند كل عمل صغير – مثل رمي القمامة في مكانها أو خفض استهلاك الماء – يحول الأفعال البيئية البسيطة إلى عبادات عظيمة.نشر الوعي بين الحجاج الآخرين بلطف وأسلوب حسن حول أهمية السلوك البيئي.

الحج فرصة عظيمة ليس فقط للتقرب إلى الله، بل أيضًا لتجسيد قيم الإسلام الرفيعة في العناية بالكون. لنجعل من حجنا هذا العام رحلة إيمانية وروحية، وفي الوقت ذاته، رسالة حب وسلام للأرض الذي ائتمننا الله عليها. إن حماية البيئة خلال موسم الحج واجب ديني وأخلاقي، يجمع بين طاعة الله والإحسان إلى خلقه.

Sustainable Urban Development in Texas: Lessons for the Middle East

Are you seeking sustainable urban solutions for Middle Eastern cities? Look at Texas, where sustainability initiatives are transforming urban landscapes. These cities offer practical blueprints, addressing waste reduction challenges with innovative strategies that could inspire your region’s sustainability goals.

In this article, you will explore the proven methods Texas cities employ, from sustainable urban planning to community-driven clean energy initiatives.  You’ll find actionable insights to tackle urban development issues, ensuring cleaner, greener cities. These models can directly address the environmental hurdles Middle Eastern urban centers face today.

urban sustainability texas

Moreover, if you’re in Texas and considering a property move to align with sustainable living, explore options for selling Texas properties.

Adapting to sustainable lifestyles often starts with the right home base, and quick property solutions can help you transition seamlessly.

Strategic Urban Planning Approaches

Ever wondered how Texas cities are redefining growth? Dickinson, a small town near Houston, is leading with vertical urban planning to combat land constraints.

Vertical Growth as a Solution

With no room for sprawl, Dickinson’s planners are looking up. Vertical growth means denser, mixed-use buildings to maximize limited space effectively.

Using GIS for Visualization

Imagine seeing a city before it’s built! Dickinson uses GIS 3D models to showcase plans, helping stakeholders visualize and refine urban transformations.

Overcoming Historical Perceptions

Dickinson’s past as a mere pit stop is fading. Planners aim to craft a unique identity, making it a true destination for residents.

Balancing Growth with Lifestyle

Waterfront charm defines Dickinson, with homes along the bayou. New plans ensure growth doesn’t sacrifice access to nature and recreational activities.

Innovative Policies and Rewards

Texas is rolling out bold policies to drive sustainability. Let’s dive into how incentives can inspire Middle Eastern cities to follow suit with innovation.

  • Incentive Programs: Texas offers tools like the Texas Enterprise Fund, rewarding job creation and investment with financial perks for growing businesses.
  • Small Business Support: The Texas Small Business Credit Initiative boosts access to capital, aiding underserved businesses with significant funding for sustainable growth.
  • Skills Development Fund: This fund partners colleges with businesses for custom job training, enhancing workforce skills for eco-friendly urban projects.
  • Research Initiatives: The Governor’s University Research Initiative attracts top researchers, fostering innovation in sustainable urban solutions across Texas cities.

These policies aren’t just numbers on paper. They’re actionable blueprints that the cities in the Middle East can adapt to fuel sustainable urban progress.

Key Benefits of Implementation

Implementing sustainable urban development strategies in Texas cities offers incredible perks. Let’s explore how these benefits could translate to urban sustainability efforts in the Middle East.

Economic Growth Opportunities

Cities like Taylor, Texas, are booming with tech investments. Sustainable planning attracts businesses, creating jobs and driving economic vitality for communities.

Infrastructure Resilience

Georgetown’s water planning shows foresight. Sustainable infrastructure ensures long-term resource security, a lesson Middle Eastern cities can apply to arid climates.

Public-Private Partnerships

Collaboration is key in Texas. Partnerships in cities like Kyle fund roads and schools, offering a model for shared urban development success.

Quality of Life Improvements

Green policies enhance living standards. Reduced emissions and better amenities in Texas cities inspire healthier, more livable urban spaces everywhere.

Potential Drawbacks and Gaps

While Texas offers sustainability inspiration, there are hurdles to consider. Let’s unpack some challenges Middle Eastern cities might face adopting similar strategies.

  • Rapid Growth Strain: Texas’ population boom stresses infrastructure. Middle Eastern cities might struggle with similar overcrowding without robust planning in place.
  • Resource Limitations: Water scarcity in Georgetown mirrors desert challenges. Adapting Texas models requires innovative solutions tailored to local environmental constraints.
  • Cultural Resistance: Texans value independence, sometimes resisting dense urban development plans. Cultural norms in the Middle East may similarly slow sustainability adoption among the native population.
  • Financial Risks: High initial costs for green projects can deter investment. Budget constraints could limit Middle Eastern cities’ sustainable transitions.

Recognizing these gaps is crucial. Tailoring Texas’ approaches to fit regional needs can help overcome barriers and ensure successful implementation.

Sustainable Financial Investment Models

Funding sustainability is a game-changer in Texas. Discover how Houston’s investment strategies can guide urban centers in the Middle East toward sustainable futures with impact.

Startup Funding Success

Houston ranks fourth nationally for sustainability startup funding, raising over $150 million. This model can inspire investment in green Middle Eastern startups.

Energy Transition Focus

The Houston Energy Transition Initiative drives clean energy investments. Middle Eastern cities can leverage oil wealth for similar renewable energy transitions.

Corporate Investments

Over $1.25 billion was invested in Houston’s clean tech in 2022. Corporate partnerships offer a blueprint for funding sustainable urban projects abroad.

Public Company Growth

Experts predict new public companies in Houston will boost energy transitions. This trend could encourage Middle Eastern markets to support green firms.

how to power a shed with solar energy

Community-Driven Renewable Energy

Texas communities are powering sustainability through renewables. Check out how Central Texas Clean Cities’ efforts can inspire Middle Eastern urban energy shifts.

  • Coalition Impact: Central Texas Clean Cities promotes alternative fuels, reducing energy use with community-driven projects across Austin’s sprawling region.
  • Infrastructure Growth: With over 2,000 electric charging outlets, the coalition supports clean transport, a scalable idea for Middle Eastern urban centers.
  • Fleet Innovations: Projects like electric shuttles for rural areas show adaptability. Similar initiatives could connect sprawling Middle Eastern city outskirts.
  • Training Programs: Innovative training ensures sustainable tech adoption. Middle Eastern communities can replicate this to build local renewable energy expertise.

Community action is powerful. By mirroring these efforts, Middle Eastern cities can foster grassroots support for renewable energy and sustainable living.

Green Infrastructure Development Ideas

Green infrastructure is transforming Texas cities. Explore how initiatives from the North Central Texas Council of Governments can inspire urban hubs in the Middle East.

Blue-Green-Grey Funding

The Blue-Green-Grey program funds innovative projects combining water, environment, and transport. Middle Eastern cities could adopt this for holistic urban solutions.

Stormwater Management

Projects like Allen’s inlet filters reduce litter in runoff. Such ideas can help Middle Eastern cities manage scarce water resources more effectively.

Community Spaces

DART’s composting at stations and community gardens fosters sustainability. Imagine similar green spaces enhancing livability in Middle Eastern urban areas.

Pilot Project Replication

Texas’ pilot projects, like Frisco’s bioswales, are designed for replication. These can guide Middle Eastern cities in testing and scaling green infrastructure.

Shape Your Tomorrow

Embrace the lessons from Texas cities to forge sustainable urban spaces in the Middle East. Dive into strategies for building a greener future by adopting innovative policies and community initiatives. Your actions today can transform challenges into lasting environmental triumphs for generations ahead.

The Important Role of Renewable Energy in Rural Development

Several years ago, it was coal that brought a great deal of the progress needed in the rural areas. Much have changed over the years. With the advancement of energy technologies, going back to mining and processing coal no longer makes much sense. Politicians who promise to bring back coal-related jobs simply don’t have a grasp of reality.

Advanced economies are already turning to renewable sources of energy and it makes sense for developing economies to do the same, unless they’re limited by urgency that they have nothing but cheaper fossil fuels to exploit.

Of course, it’s not enough to simply state here that renewable energy is the better option to help development in rural areas. That’s why it’s important to highlight and explain the following points.

Renewable Energy Creates Employment

Who says there are no jobs in renewable energy? In the United States, for example, the solar and wind energy industries are reportedly creating jobs 12x as fast as that of the rest of the country’s economy. According to a study published by the Environmental Defense Fund’s Climate Corps program, the US solar and wind industries have expanded at an average growth of 20% in recent years. The same can be replicated in poorer rural areas, in Africa in particular.

Based on World Bank data, wind, solar and biomass energy create 4.6, 5.4, and 7.4 direct jobs respectively for every one million dollar of spending. They also create 4.9, 4.4, and 5.0 indirect jobs as well as 8.4, 9.3, and 12.4 induced jobs for every million invested. Coal pales in comparison as it only creates 0.8 direct jobs, 2.9 indirect jobs, and 2.3 induced jobs for every one million dollars spent.

The employment generation potential of renewable energy does not only mean jobs in the renewable power plants. As mentioned in the data above, there are also indirect and induced jobs created by renewable power plants especially solar, wind, and biomass. These job opportunities emerge because of the rise of industries in a locality and in response to the purchasing power created by the direct jobs generated by the renewable energy plants.

Governments that support renewable energy are helping create employment for their citizens. It provides an option for those who resort to overseas employment. Africans, for example, would likely prefer getting employed locally especially when taking into account how costly it is for them to send money back home.

Negligible Import of Energy Carriers

What makes renewable energy a better option for promoting economic progress in rural areas is the fact that not every rural area can become a site for coal or oil mining. There are more viable places for wind and solar plants as compared to coal and other fossil power plants. Wind and sunlight don’t have to be imported whereas coal power plants have to import the coal they need if it’s not available locally.

For renewable energy, including geothermal and hydroelectric power, what may have to be imported are only the equipment and construction materials needed to build the power plants. The fuel is sourced locally and is often available for free. This means money circulates in the local economy. There’s virtually no outward money flow, which is good for advancing the local economy at a faster rate.

Localities with their own renewable energy plants may even have excess power supply, which they can sell to neighboring areas. Again, this is helpful in boosting the local economy.

Access to Cheaper Power

Places that have their own power plants have lower power prices. This is largely due to the law of demand and supply. Increasing power supply in an area leads to the dropping of power prices. Everyone wants cheaper power, and this does not only benefit consumers. It is also another factor for improving local economic progress.

Cheaper power can be similarly achieved with the construction of coal plants (which are usually regarded as cheaper and more profitable). However, coal plants don’t offer the same advantages renewable energy does. Notably, coal plants have to import the coal they need for fuel and they are far from clean.

Promotion of Commercial and Industrial Growth

The introduction of electricity to an area initiates a chain reaction that leads to economic activity and progress. It can also bring about the rise of industries through rural small business ideas. For places that already have power supply, the introduction of new power plants creates more power supply which means lower power prices. This, in turn, makes an area attractive for industrial investments.

Access to power or electricity is vital in addressing poverty especially in places like Africa. Electricity does not only allow locals to have power for lighting. Affordable, abundant, and dependable power supply is necessary to power up communications, education, agriculture, industrialization, and even entertainment. In many parts of Africa, renewable energy is deemed more viable since it costs less in the long term as compared to bringing electricity from large scale power plants.

Renewable Energy Means Clean Power

Renewable energy is clean energy. Wind and solar power farms may take up significantly wider areas as compared to what’s needed for fossil power plants but this drawback is effectively compensated by the clean power produced. Some wind farms may even serve as tourist destinations. Renewable energy does not adversely affect local ecologies and create problems such as illnesses among locals, especially those who reside near coal-fired power plants. The absence of pollution alone is a major benefit for the rural areas where renewable power plants are built.

Solar power systems are increasingly becoming common in rural areas

Some may argue about the existence of clean coal technology but this is something widely contested. Coal pollution mitigation technologies do exist but clean coal-based power production is more like a myth. It also does not help that not many coal power plant investors are willing to spend for coal pollution mitigation solutions as this can reduce their profits.

Conclusion

There’s no doubt that renewable energy can help in rural development. With proper management and government support, it can pave the way for economic advancement especially in poorer countries. It is a viable solution for addressing poverty and jumpstarting efforts to create or accelerate economic activity. It is a worthwhile investment option that also comes with a very important bonus: clean energy that does not contribute to environmental degradation and global warming.