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Thermodynamic analysis of a sorption refrigeration system with and without internal heat recovery

机译:具有和不具有内部热量回收的吸附式制冷系统的热力学分析

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Results obtained from thermodynamic analysis of a solid sorption refrigeration system with and without internal heat recovery (IHR) employing ammonia as the refrigerant are presented. Four combinations of salts, namely MgCl2/SrCl2, MgCl2/CaCl2, CaCl2/SrCl2 and CaCl2/CaCl2, are studied for systems with internal recovery. The system chosen is the one that can produce ice at ?10°C using a waste heat source available at 613 K. Energy and entropy balance equations are applied to analyse each of the processes to estimate the individual heat transfer and entropy generation rates for all the systems. Effects of the sorbent and reactor mass are duly considered. Results show that among the four combinations studied, CaCl2/CaCl2 cycle yields the highest coefficient of performance and specific cooling output per kilogram of the salt. Cooling/heating of the generator/absorber results in significant entropy generation in all the systems. IHR improves the performance significantly.
机译:给出了采用和不采用氨作为制冷剂的内部热回收(IHR)的固体吸附式制冷系统的热力学分析结果。 MgCl 2 / SrCl 2 ,MgCl 2 / CaCl 2 ,CaCl 的四种盐组合对于内部恢复系统,研究了2 / SrCl 2 和CaCl 2 / CaCl 2 。选择的系统是使用613 K的废热能在10°C下制冰的系统。应用能量和熵平衡方程式来分析每个过程,以估算所有过程的单个传热和熵产生率。系统。应适当考虑吸附剂和反应器质量的影响。结果表明,在所研究的四种组合中,CaCl 2 / CaCl 2 循环产生的性能系数和每千克盐的比冷却输出最高。发生器/吸收器的冷却/加热会在所有系统中产生大量的熵。 《国际卫生条例》显着提高了绩效。

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