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“Due to direct encapsulation of PCMs with PV modules, heat flux rate through the envelopes increases when compared with ventilated air gap and insulation provided between the PCMs and PV modules,” it explained. The experiment showed that the PCMs are able to delay the heat flux rate through the building envelopes. The Indian group used organic, inorganic, eutectic PCMs and a PCM mixed with nanoparticles. Four kinds of PCMs were used in the experiment and were encapsulated with the PV system and the building envelopes under two configurations, which they defined as “naturally or forced ventilated” and “non-ventilated.” The researchers stressed that the use of PCMs in BIPV systems would not only reduce the panels operating temperatures but also have a positive impact on the thermal comfort inside the buildings.
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“However, optimization of PCM quantity will be required depending upon the region.” “Our technique will be particularly suitable for the hot climatic region, where the BIPV- PCM system can be beneficial economically,” research co-author Digvijay Singh told pv magazine. PCMs are able to absorb, store and release large amounts of latent heat over a defined temperature range and have often been used, at the research level, for PV module cooling. 2019 grid parity white paperĪ group of scientists from the Devi Ahilya University in India has tested whether p hase change materials (PCMs) can be used as a passive cooling agent in a building-integrated photovoltaic (BIPV) power system. Clean Power Research: Solar data solutions to maximize PV project performance.Energy Storage North America Special 2018.The smarter E Europe 2019 special edition.Market overview: Microgrid control systems.Market overview: Large-scale storage systems.