Phase Behavior of Light-Responsive Lyotropic Liquid Crystals for Molecular Solar Thermal Energy Storage. [PDF]
Jones BE +6 more
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Review: The Application of MXene in Thermal Energy Storage Materials for Efficient Solar Energy Utilization. [PDF]
Sun H, Jin Y, Alam F.
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Surfactant-enabled strategy for molecular solar thermal energy storage systems in water.
Fernandez L +6 more
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Machine learning-based Direct Normal Irradiance (DNI) forecasting using satellite data for Concentrated Solar Power (CSP) plants with Thermal Energy Storage (TES). [PDF]
Rathnayake N, Wijewardane S.
europepmc +1 more source
Graphene oxide/carbon nanotube reinforced PCM microcapsules with high thermal conductivity and high latent heat for thermal energy storage. [PDF]
Du B +6 more
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A review of solar collectors and thermal energy storage in solar thermal applications [PDF]
Thermal applications are drawing increasing attention in the solar energy research field, due to their high performance in energy storage density and energy conversion efficiency. In these applications, solar collectors and thermal energy storage systems
C Y Zhao
exaly +2 more sources
Review on thermal energy storage with phase change materials (PCMs) in building applications [PDF]
Thermal energy storage with phase change materials (PCMs) offers a high thermal storage density with a moderate temperature variation, and has attracted growing attention due to its important role in achieving energy conservation in buildings with ...
Yuan Tian, C Y Zhao
exaly +2 more sources
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It was mentioned in Chap. 1 that a significant portion of the total energy use is for temperature control and lighting in living and working spaces. Energy use for lighting purposes comprises between 20 and 50 % of the total energy used in homes, and varies appreciably with both location and time of the year, of course.
DİNCER, İbrahim, Rosen, M.A.
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The chapter gives an overview of cold thermal energy storage (CTES) technologies. Benefits as well as classification and operating strategies of CTES are discussed. Design consideration and sizing strategies based on calculated load profile for design day is presented. Some recommendation concerning designing of CTES equipment are given.
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