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Theoretical analysis of energy-saving performance and economics of CO2 and NH3 heat pumps with simultaneous cooling and heating applications in food processing

机译:在食品加工中同时冷却和加热的CO2和NH3热泵的节能性能和经济性的理论分析

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摘要

Food processing has significant simultaneous requirements of cooling, warm water and hot water. In order to reduce energy consumption and greenhouse gases emission, one type of NH3 heat pump and two types of transcritical CO2 heat pumps are proposed. These natural refrigerant heat pumps can supply not only cooling, but also warm water and hot water simultaneously. The characteristics and performance of the heat pumps are analyzed and simulated. Annual primary energy saving and annual operation cost saving are predicted for California, Wisconsin, New York, and Florida. Research results show that the maximum possible value of annual primary energy-saving rates using the CO2 heat pumps ranges from 56% to 65%, and using the NH3 heat pump is approximately 44%; the maximum possible value of annual operation cost saving rates using the CO2 heat pumps ranges from 50% to 66%, and using the NH3 heat pump is from 20% to 47%. Published by Elsevier Ltd.
机译:食品加工同时具有冷却,温水和热水的显着要求。为了减少能源消耗和温室气体排放,提出了一种NH3热泵和两种跨临界CO2热泵。这些天然制冷剂热泵不仅可以提供冷却,还可以同时提供热水和热水。对热泵的特性和性能进行了分析和仿真。预计加利福尼亚,威斯康星州,纽约和佛罗里达州的年度一次能源节省和年度运营成本节省。研究结果表明,使用CO2热泵的年度一次节能率的最大可能值在56%至65%之间,而使用NH3热泵的则大约为44%。使用CO2热泵的年度运行成本节省率的最大可能值范围是50%至66%,使用NH3热泵的年度运行成本节省率的最大值是20%至47%。由Elsevier Ltd.发布

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