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首页> 外文期刊>International Journal of Refrigeration >Energy and exergy analyses of R513a as a R134a drop-in replacement in a vapor compression refrigeration system
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Energy and exergy analyses of R513a as a R134a drop-in replacement in a vapor compression refrigeration system

机译:R513A的能量和暴露分析作为蒸汽压缩制冷系统中的R134A替代品

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摘要

R513a (XP10), a mixer of 56% R1234yf (C3H2F4) and 44% R134a (CH2FCF3), has similar thermophysical characteristics to R134a but only half of its global warming potential (GWP). This paper uses an economized-cycle vaper compression refrigeration system as an example to investigate the energy and exergy performance of R513a used as a drop-in replacement for R134a. Differing from previous research, this study examines the entire system operating zone to identify the performance differences in terms of capacity, COP, exergy destruction rate, and exergy efficiency between R513a and R134a systems. The analysis found that a system with drop-in R513a demonstrates reduced capacity by up to 12% and efficiency (up to 9% with COP and 14% with exergy efficiency) under a majority of operating conditions, while exhibiting less irreversibility (5% to 13%) under high-ambient, high-space temperature conditions and better exergy efficiency of 3% in low-ambient conditions. In addition, the contribution of each individual component to the exergy destruction rate at various operating conditions is identified. To improve the energy and exergy efficiency of a R513a system, the analysis results indicate that the compressor is the first component that should be redesigned or reselected, followed by the economizer, valves, and evaporator. The condenser influence is negligible. (C) 2019 Elsevier Ltd and IIR. All rights reserved.
机译:R513A(XP10),56%R1234YF(C3H2F4)和44%R134A(CH2FCF3)的混合器具有与R134A相似的热神族特征,但仅为其全球变暖潜力的一半(GWP)。本文采用经济循环助力压缩制冷系统,以研究R513A的能量和漏洞性能作为R134A的替代品。本研究与以前的研究不同,该研究审查了整个系统运行区,以识别能力,COP,DERERGE销毁率和R513A和R134A系统之间的高度效率方面的性能差异。该分析发现,在大多数操作条件下,具有下拉R513A的系统证明了最多12%,效率降低了12%,效率(高达9%,高达9%),同时表现出更少的不可逆转性(5% 13%)在高环境下,高空间温度条件下,低环境条件下的3%较好的效率为3%。此外,确定了每个单独组分在各种操作条件下对漏洞破坏率的贡献。为了提高R513A系统的能量和漏极效率,分析结果表明压缩机是应重新设计或重新选择的第一组件,然后是经济化器,阀门和蒸发器。冷凝器的影响是可忽略不计的。 (c)2019年Elsevier Ltd和IIR。版权所有。

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