Researchers discover new mechanism to cool buildings while saving energy (2024)

Key takeaways

  • The movement of radiant heat — felt when a hot surface warms our bodies and homes — between buildings and their surroundings at ground level makes buildings with less skyward-facing surfaces harder to cool.
  • A UCLA research team has demonstrated a new passive cooling technology that coats walls and windows with materials that can better manage heat movement between buildings and their surroundings at ground level.
  • Findings could reduce the reliance on air conditioning and provide a more environmentally friendly, low-cost and scalable option for low-income communities with limited or no access to cooling and heating systems.

With temperatures rising globally, the need for more sustainable cooling options is also growing. Researchers at UCLA and their colleagues have now found an affordable and scalable process to cool buildings in the summer and heat them in the winter.

Led by Aaswath Raman, an associate professor of materials science and engineering at the UCLA Samueli School of Engineering, the research team recently published a study in Cell Reports Physical Science detailing a new method to manipulate the movement of radiant heat through common building materials to optimize thermal management.

Radiant heat, which is felt whenever a hot surface warms our bodies and homes and is carried by electromagnetic waves, travels across the entire broadband spectrum at ground level between buildings and their environments, such as streets and neighboring structures. On the other hand, heat moves between buildings and the sky in a much narrower portion of the infrared spectrum known as the atmospheric transmission window. The difference in how radiant heat travels between buildings and the sky versus the ground has long presented a challenge to cooling buildings with less skyward-facing surfaces. These buildings have been hard to cool in the summer as they retain heat from the ground and neighboring walls when the outside temperature is high. They are equally difficult to warm in wintertime as the outdoor temperature drops and the buildings lose heat.

Researchers discover new mechanism to cool buildings while saving energy (1)

Raman Lab/UCLA

A thermal infrared image capturing heat movement between buildings in Los Angeles.

“If we look at historical cities like Santorini in Greece or Jodhpur in India, we find that cooling buildings by making roofs and walls reflect sunlight has been practiced for centuries,” said Raman, who leads the Raman Lab at UCLA Samueli. “In recent years there has been massive interest in cool roof coatings that reflect sunlight. But cooling walls and windows is a much more subtle and complex challenge.”

However, with the proven success of cooling buildings by using super white paint on the roofs to reflect sunlight and radiate heat into the sky, the researchers set out to create a similar passive radiative cooling effect by coating walls and windows with materials that can better manage heat movement between buildings and their surroundings at ground level. The researchers demonstrated that materials capable of preferentially absorbing and emitting radiant heat within the atmospheric window could stay cooler than conventional building materials in the summer and warmer than they could during the winter.

“We were particularly excited when we found that materials like polypropylene, which we sourced from household plastics, can selectively radiate or absorb heat in the atmospheric window very effectively,” Raman said. “These materials border on the mundane, but the same scalability that makes them common also means that we could see them thermoregulating buildings in the near future.”

In addition to leveraging easily accessible cost-saving materials, the team’s approach also has the added benefit of saving energy by reducing the reliance on air conditioners and heaters that are not only costly to run but also contribute to carbon dioxide emissions.

“The mechanism we proposed is completely passive, which makes it a sustainable way to cool and heat buildings with the seasons and yield untapped energy savings,” said Jyotirmoy Mandal, the study’s first author and a former postdoctoral scholar in Raman’s lab. Mandal is now a civil and environmental engineering assistant professor at Princeton University.

According to the researchers, the new methodology can scale easily and will be especially impactful on low-income communities with limited or no access to cooling and heating systems that have seen increasing casualties resulting from extreme weather events across the globe.

Raman and his team are exploring ways to demonstrate this effect at larger building scales and its real-world energy savings, particularly in heat-vulnerable communities in Southern California.

The study was funded in part by a Schmidt Science fellowship, the Rhodes Trust, the Alfred P. Sloan Foundation and the National Science Foundation. Other authors of the paper are John Brewer — a recent Ph.D. graduate from Raman’s lab, Jyothis Anand of Oak Ridge National Lab, Arvind Ramachandran of Arizona State University and independent researcher Sagar Mandal.

Researchers discover new mechanism to cool buildings while saving energy (2024)

FAQs

Researchers discover new mechanism to cool buildings while saving energy? ›

The researchers demonstrated that materials capable of preferentially absorbing and emitting radiant heat within the atmospheric window could stay cooler than conventional building materials in the summer and warmer than they could during the winter.

What energy is used to heat and cool buildings? ›

Buildings use electricity for all end uses. Natural gas is generally used directly in commercial buildings to heat water and interior space and to operate cooking and cooling equipment.

How can we conserve energy in buildings adjust the inside temperatures to be? ›

Adjust your thermostat.

In the winter, set your thermostat to 68 degrees when the work place is occupied, and 60-65 degrees or off after business hours. You can save up to 3% for each degree the thermostat is raised in the summer and lowered in the winter. Using ceiling or room fans improves air circulation.

How do buildings keep cool in hot climates? ›

A passively cooled building uses the building's materials and design to transfer heat to heat sinks, such as the air around the building, in the same way air conditioning does—but without using electricity. This lowers the indoor temperature below the temperature outside.

How are buildings heated and cooled? ›

Common Types of Central Heating and Cooling Systems

They can be air-source, ground-source, or water-source, depending on where the heat is being transferred from. Hydronic systems: Hydronic systems use hot or chilled water to heat or cool the building.

What is the cheapest temperature to keep your house in summer? ›

Every season has an ideal thermostat temperature and for summer the U.S. Department of Energy suggests that when home, 78 degrees is the sweet spot between staying cool and keeping your energy bill low.

What is the best AC temperature for energy saving? ›

You can also reduce your energy costs significantly by raising the temperature while you are at work, away from home, or asleep. For the greatest savings, consider setting your thermostat to: About 78 degrees while you are at home. About 82 degrees while you are sleeping.

What are the most energy-efficient ways to cool home? ›

Using a combination of proper insulation, energy-efficient windows and doors, daylighting, shading, and ventilation will usually keep homes cool with less air conditioning.

What is energy used for in buildings? ›

The buildings sector, which includes energy used for constructing, heating, cooling and lighting homes and businesses, as well as the appliances and equipment installed in them, accounts for over one third of global energy consumption and emissions.

What type of energy is used to heat homes? ›

Natural gas is the most common type of fuel, but some furnaces run on propane, heating oil, or electricity. Furnace efficiency is determined by how much fuel is used to heat the home.

What are the types of energy used in your building? ›

Electricity and natural gas are the most-used energy sources in homes
  • Electricity—all types of energy end uses.
  • Natural gas—space and water heating, clothes drying, and cooking.
  • Heating oil—space and water heating.
  • LPG (propane)—space and water heating, clothes drying, and cooking.
  • Kerosene—space heating.
Dec 18, 2023

What is energy from warm to cool objects? ›

Hence, Thermal energy moving from a warmer object to a cooler object is called heat Transfer.

References

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