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Ammonia and Carbon Dioxide Heat Pumps for Heat Recovery in Industry

机译:用于工业热回收的氨和二氧化碳热泵

摘要

This paper presents a generic, numerical study of high temperature heat pumps for waste heat recovery in industry using ammonia and carbon dioxide as refrigerants. A study of compressors available on the market today, gives a possible application range of the heat pumps in terms of temperatures. Calculations of cycle performances are performed using a reference cycle for both ammonia and carbon dioxide as refrigerant. For each cycle a thorough sensitivity analysis reveals that the forward and return temperatures of the heat sink (condenser or gas cooler) of the heat pump are most important for the coefficient of performance, COP. By comparing the cycles it is found that for each set of operating conditions the two refrigerants perform equally well at one given inlet temperature of the heat sink. Above this temperature ammonia cycles have the best COP and below CO2 cycles perform best. A general conclusion is that ammonia heat pumps are best at heat sink inlet temperatures above 28°C and CO2 is best below 24°C, independent of other parameters.
机译:本文介绍了一种高温热泵的通用数值研究,该工业使用氨和二氧化碳作为制冷剂来回收工业废热。一项对当今市场上可用的压缩机的研究给出了热泵在温度方面的可能应用范围。循环性能的计算使用氨和二氧化碳作为制冷剂的参考循环进行。对于每个循环进行彻底的灵敏度分析,结果表明,热泵的散热器(冷凝器或气体冷却器)的前进和后退温度对于性能系数COP最重要。通过比较循环,发现对于每组操作条件,两种制冷剂在一个给定的散热器入口温度下均表现良好。在此温度以上,氨循环的COP最佳,而在CO2循环以下的循环最佳。总的结论是,与其他参数无关,氨热泵在散热器入口温度高于28°C时最好,而二氧化碳在24°C以下则最好。

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