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Performance evaluation of low global warming potential working fluids as R134a alternatives for two-stage centrifugal chiller applications

机译:低全球变暖潜在工作液作为双阶段离心冷却器应用的R134A替代品的性能评估

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摘要

With the increasing concern about climate change, the Kigali Amendment to the Montreal protocol requires parties to gradually reduce high global warming potential (GWP) hydrofluorocarbon (HFC) use by 80-85% by the late 2040s. The US Environmental Protection Agency (EPA) and EU Directive 517/2014 are also setting the ban on the use of such refrigerants. R134a, as a high GWP (GWP(100):1300) HFC refrigerant, is a commonly used medium pressure chiller refrigerant that will be phased out. Searching for low GWP R134a alternatives is necessary. In this study, hydrofluoroolefin blends-R513A, R513B, R515A, R515B, R516A and pure hydrofluoroolefins-R1234yf and R1234ze(E) are investigated for performance evaluation for two-stage centrifugal chiller application with a fixed cooling capacity 1,750 kW. The evaluation was conducted via a thermodynamic process model, a component sizing methodology and a life cycle environmental performance methodology R515A, R515B and R1234ze(E) show a 25% volume capacity reduction in comparison with baseline due to their low suction density. All R134a alternatives exhibit more component heat transfer area than baseline, with 5-15% increase for the evaporator and 12-38% for the condenser. The comparison for the compressor impeller diameter shows that R513A, R513B, and R516A do not require the compressor size change from baseline, while R515A, R515B and R1234ze(E) need a more than 18% larger compressor size. R134a alternatives can provide 8.4-16.7% life cycle emission reduction in China and 14.7-27.7% in South Korea. In general, R513A, R513B and R516A are more preferable R134a drop-in options for less component modification and the same compressor can be employed directly. R516A is A2L and necessary vessel safety code protection is needed. R515A and R515B can serve as the system newly design-based interim non-flammable replacement for R134a in medium-pressure chillers with a large modification for a compressor. Gradually, with more strict regulations, R1234ze(E) can be the ultimate option in the market with less/negligible modification from R515A and R515B. For R1234yf, its poor heat transfer performance and high price can impede its application in chillers. It is anticipated that the viewpoints and insights from this study can be beneficial for the engineers, policymakers, scholars, public and manufacturers to maintain the maximum sustainability and economic benefits.
机译:随着人们对气候变化的日益关注,基加利修正案蒙特利尔协议要求各方在21世纪40年代后期由80-85%,逐步减少高全球变暖潜能值(GWP)的氢氟烃(HFC)的使用。美国环境保护署(EPA)和欧盟指令2014分之517也设置在使用这种制冷剂的禁令。的R134a,作为高GWP(全球变暖潜能值(100):1300)HFC制冷剂,是将被淘汰一个常用的中压制冷剂冷却器。搜索低GWP的R134a替代品是必要的。在这项研究中,氢氟烯烃的共混物-R513A,R513B,R515A,R515B,R516A和纯的氢氟烯烃-剂R1234yf和的R1234ze(E)进行了研究用于性能评价为具有固定冷却能力1750千瓦的两级离心式冷却器应用。评价是通过热力学过程模型,组件的大小的方法和一个生命周期的环境性能的方法R515A,R515B和的R1234ze(E)示出了与基线比较有25%的体积容量的降低是由于它们的低吸入密度下进行。所有的R134a的替代表现出多种组分的传热面积比基线,用5-15%的增加用于蒸发器和12-38%用于冷凝器。用于压缩机叶轮直径表明,R513A,R513B,R516A和不需要从基线压缩机大小变化,而R515A,R515B和的R1234ze(E)需要较大的18%以上压缩机大小的比较。 R134a的替代品可以在中国提供8.4-16.7%的生命周期减排和韩国14.7-27.7%。一般而言,R513A,R513B和R516A是更优选的R134a投递为较少组分的修改和相同的压缩机的选项,可直接使用。 R516A是需要A2L和必要的船舶安全代码保护。 R515A和R515B可以用作系统在中压冷却器为R134a的新设计基于临时不燃替换具有大变形例用于压缩机。慢慢地,随着更严格的规定,的R-1234ze(E)可在市场上与R515A和R515B以下/修改可以忽略不计的最终选择。对于R1234yf的,其较差的传热性能及较高的价格可能妨碍其在冷却器中的应用。据预测,从这项研究的观点和见解,可以是有益的工程师,政策制定者,学者,公众和制造商保持最大的可持续发展和经济效益。

著录项

  • 来源
    《The Korean journal of chemical engineering》 |2021年第7期|1438-1451|共14页
  • 作者

    Li Gang;

  • 作者单位

    Ingersoll Rand Residential Solut 6200 Troup Highway Tyler TX 75707 USA|Ingersoll Rand Engn & Technol Ctr Asia Pacific Shanghai 200051 Peoples R China|Univ Shanghai Sci & Technol Sch Energy & Power Engn Shanghai 200091 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    R513A; R513B; R515A; R515B; R516A; R1234yf; R1234ze(E);

    机译:R513A;R513B;R515A;R515B;R516A;R1234YF;R1234ZE(E);

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