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Compressed-Liquid Energy Storage with an Adsorption-based Vapor Accumulator for Solar-Driven Vapor Compression Systems in Residential Cooling

机译:带有吸附式蒸汽蓄能器的压缩液体能量存储,用于住宅制冷中的太阳能驱动蒸汽压缩系统

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摘要

A cycle-integrated energy storage strategy for vapor-compression refrigeration is proposed wherein thermo-mechanical energy is stored as compressed liquid.A compressed-liquid tank is integrated into the liquid line of the system by means of an adsorption-based vapor accumulator in the vapor line. Energy is retrieved through expansion of the compressed liquid, which allows for a tunable evaporator temperature. A thermodynamic model is developed to assess the system performance, with storage incorporated, for solar residential cooling in two locations with contrasting ambient temperature profiles. Ammonia, R134a, and propane, all paired with activated carbon as adsorbent, are evaluated.A high cold thermal energy storage density is achieved when operated with ammonia. However, the accumulator suppresses the coefficient of performance of the system because work is required to extract refrigerant from the adsorbent. Practical feasibility of the proposed storage strategy calls for the development of nontoxic refrigerant–adsorbent pairs with more favorable adsorption behavior.
机译:提出了一种用于蒸汽压缩制冷的循环集成式能量存储策略,其中,热机械能以压缩液体的形式存储。通过一个基于吸附的蒸汽蓄能器,将压缩液体箱集成到系统的液体管线中蒸气管线。通过压缩液体的膨胀来回收能量,这使蒸发器温度可调。开发了一个热力学模型来评估系统性能,并结合存储功能,在两个环境温度曲线相反的地方进行太阳能住宅制冷。对氨,R134a和丙烷(均与活性炭作为吸附剂)进行了评估。使用氨运行时,可实现较高的冷热能存储密度。但是,由于需要进行从吸附剂中抽出制冷剂的工作,因此蓄能器抑制了系统的性能系数。拟议中的储存策略的实际可行性要求开发具有更佳吸附性能的无毒制冷剂-吸附剂对。

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