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Performance Study on a Vapour Compression Refrigeration Cycle Using R744/R290,R744/R600 or R744/R600a as Refrigerant

机译:使用R744 / R290,R744 / R600或R744 / R600a作为制冷剂的蒸汽压缩制冷循环的性能研究

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The high pressure in transcritical refrigeration cycle using pure R744 (CO2) as refrigerant is conventionally up to 10MPa,which exerts rigorous demands upon CO2 components,refrigerating system and its safe operation.Consequently,it is a possible disadvantage that the initial cost of pure CO2 based refrigeration system is higher than that of conventional refrigerants.To decrease high pressure,meanwhile not to affect the global environment,Natural refrigerant mixtures,which are environmentally friendly,are taken in this research.Under the given conditions,theoretical analyses on a vapour compression refrigeration cycle were conducted to investigate the system performance when using R744/R290,R744/R600 or R744/R600a as naturally non-azeotropic refrigerant mixtures.For three mixtures,by altering mass fraction of CO2 and refrigerant temperature at evaporator exit respectively,the influences of which upon cooling capacity,heating capacity,compressor power and condensing pressure were performed.Calculation results show that one of the advantages of this system is the capability of keeping the high pressure in the system within a range of the common vapour compression refrigeration system by selecting the CO2 fraction of mixture when compared to that in the vapour compression system using pure CO2.R744/R600 or R744/R600a has a lower condensing pressure but a poor COP while R744/R290 is opposite under the same conditions.As the mass composition of R744 in the mixture increases,COP decreases and compressor power increases.
机译:传统的以纯R744(CO2)为制冷剂的跨临界制冷循环中的高压通常高达10MPa,这对CO2组件,制冷系统及其安全运行提出了严格的要求。因此,纯CO2的初始成本可能是不利的基于制冷的系统要比常规制冷系统更高。为了降低高压,同时又不影响全球环境,本研究采用了对环境友好的天然制冷剂混合物。在给定条件下,对蒸汽压缩进行了理论分析使用R744 / R290,R744 / R600或R744 / R600a作为天然非共沸制冷剂混合物时,进行了制冷循环以研究系统性能。对于三种混合物,分别通过改变蒸发器出口处的CO2质量分数和制冷剂温度来改变其影响根据冷却能力,加热能力,压缩机功率和冷凝压力来执行ed。计算结果表明,与蒸汽压缩系统相比,该系统的优势之一是能够通过选择混合物的CO2分数将系统中的高压保持在普通蒸汽压缩制冷系统的范围内在相同条件下,R744 / R600或R744 / R600a的冷凝压力较低,但COP较差,而R744 / R290则相反。随着混合物中R744的质量组成增加,COP减小,压缩机功率增大。

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