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Design and Analysis of Phase Change Material based thermal energy storage for active building cooling: a Review

机译:基于相变材料的热能存储设计和分析,用于建筑物的主动制冷

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Phase Change Materials (PCMs) are "latent" thermal storage materials. They use chemical bonds to store and release heat. The thermal energy transfer occurs when a material changes from a solid to a liquid or from a liquid to a solid form. This is called a change in state or "phase." Initially, these solid-liquid PCMs perform like conventional storage materials; their temperature rises as they absorb solar heat. Unlike conventional heat storage materials, when PCMs reach the temperature at which they change phase (their melting point), they absorb large amounts of heat without getting hotter. When the ambient temperature in the space around the PCM material drops, the Phase Change Material solidifies, releasing its stored latent heat. PCMs absorb and emit heat while maintaining a nearly constant temperature. Within the human comfort and electronic-equipment tolerance range of 20C to 35C, latent thermal storage materials are very effective. They can be used for equalization of day & night temperature and for transport of refrigerated products. In the proposed project heat of fusion of Cacl2. 6H2o as PCM is used for cooling water during night and this cooled water is used as circulating medium trough fan coil unit, air trough FCU will get cooled by transferring heat to water and fresh & cool air will be thrown in a room. In the proposed project FREE COOLING & ACTIVE BUILDING COOLING concepts of Thermal Energy Storage are used in combine
机译:相变材料(PCM)是“潜在”储热材料。他们使用化学键来存储和释放热量。当材料从固体变为液体或从液体变为固体时,就会发生热能传递。这称为状态更改或“阶段”。最初,这些固液PCM的性能类似于传统的存储材料。它们吸收太阳能时温度会升高。与传统的储热材料不同,当PCM达到相变温度(熔点)时,它们会吸收大量热量而不会变热。当PCM材料周围空间的环境温度下降时,相变材料固化,释放其存储的潜热。 PCM吸收并散发热量,同时保持几乎恒定的温度。在20C至35C的人体舒适度和电子设备容差范围内,潜热存储材料非常有效。它们可用于白天和晚上的温度均衡以及冷藏产品的运输。在拟议的项目中,Cacl2的熔化热。由于PCM在晚上用于冷却水,因此使用6H2o,并且该冷却水用作循环介质槽风扇盘管单元,空气槽FCU将通过将热量传递到水中而得到冷却,新鲜和凉爽的空气将被扔到房间中。在拟议的项目中,结合使用热能存储的免费冷却和主动建筑冷却概念

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