EcoMat · 2021 · 168 citations · 141 references
Radiative Heat TransferEngineeringEnergy EfficiencyEnergy ConversionMaterial DesignsThermal RadiationRefrigerationThermodynamicsSolar ReflectanceSolar Thermal EnergySolar Physics (Heliophysics)Solar PowerPdrc PerformanceIn-space Electric PowerRadiative AbsorptionRadiation MeasurementRadiometryHeat TransferSolar Physics (Solar Energy Conversion)Solar CoolingThermal EngineeringPdrc Technologies
Passive daytime radiative cooling dissipates terrestrial heat to outer space without energy input or pollution, offering a potential solution to both the energy crisis and global warming. This review summarizes general strategies for achieving passive daytime radiative cooling and its diverse applications. The authors describe the heat transfer processes involved, review material designs that tune infrared emittance and solar reflectance, and discuss applications in space cooling, solar cell cooling, water harvesting, and electricity generation. An image is included.
Abstract Passive daytime radiative cooling (PDRC) dissipates terrestrial heat to the extremely cold outer space without using any energy input or producing pollution. It has the potential to simultaneously alleviate the two major problems of energy crisis and global warming. In this review, we summarize general strategies implemented for achieving PDRC and various applications of PDRC technologies. We first introduce heat transfer processes involved in PDRC, including radiative and nonradiative heat transfer processes, to evaluate the PDRC performance. Subsequently, we summarize the general material designs used for controlling PDRC performance, such as tuning the thermal mid‐infrared emittance and solar reflectance. Finally, we discuss the diverse applications of PDRC technologies to overcome problems in space cooling, solar cell cooling, water harvesting, and electricity generation. image
141
Passive radiative cooling below ambient air temperature under direct sunlight
Aaswath P. Raman, Marc Abou Anoma, Linxiao Zhu et al. · Nature · 2014 · 3.2K citations
Radiative Heat Transfer, Engineering, Atmospheric Science +9
Hierarchically porous polymer coatings for highly efficient passive daytime radiative cooling
Jyotirmoy Mandal, Yanke Fu, Adam Overvig et al. · Science · 2018 · 2K citations · Full text
Radiative human body cooling by nanoporous polyethylene textile
Po‐Chun Hsu, Yu Song, Peter B. Catrysse et al. · Science · 2016 · 1.1K citations · Full text