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Thermodynamic analyses on hybrid sorption cycles for low-grade heat storage and cogeneration of power and refrigeration

机译:低品位储热以及电力和制冷热电联产混合吸附循环的热力学分析

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摘要

This paper investigates three ways of coupling a solid/gas sorption refrigeration cycle with a Rankine cycle to create innovative hybrid cycles enabling power and refrigeration cogeneration with intrinsic energy storage. A new methodology has been developed to analyze these hybrid cycles and assess five relevant performance criteria (required heat source temperature, energy efficiency, exergy efficiency, power production ratio, and exergy storage density). Screening of 103 reactive salts implemented in the different hybrid cycle configurations highlights the most favorable configuration and reagent to meet the requirements of various applications. Analyses show that energy and exergy efficiencies can reach 0.61 and 0.40, respectively. Exergy storage density ranges from 142 to 640 kJ/kg(NH3) when the heat source temperature is increased from 107 degrees C to 250 degrees C.
机译:本文研究了将固/气吸收式制冷循环与朗肯循环耦合以创建创新的混合循环的三种方式,该混合循环可实现电力和制冷的热电联产以及内在的能量存储。已经开发出一种新的方法来分析这些混合循环并评估五个相关的性能标准(所需的热源温度,能量效率,火用效率,发电比和火用存储密度)。筛选以不同的混合循环构型实施的103种反应性盐,突显了满足各种应用需求的最有利构型和试剂。分析表明,能源效率和火用效率分别可以达到0.61和0.40。当热源温度从107摄氏度增加到250摄氏度时,火用存储密度范围为142至640 kJ / kg(NH3)。

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