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Vapor-liquid equilibria of a low GWP refrigerant, R-1234ze(E), mixed with a POE lubricant.

机译:低全球升温潜能值制冷剂R-1234ze(E)与POE润滑剂混合后的汽液平衡。

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摘要

Novel vapor-liquid-equilibria data (P-T-x) and liquid densities of binary mixtures of an emerging low-GWP (Global Warming Potential) refrigerant, R-1234ze(E), and a polyol ester (POE) oil, RL68H, are measured. Data are presented for oil mass fractions ranging from 0 to 0.85 over a temperature range from -10 to 60°C, and the results are compared to the properties of mixtures of R-134a with RL68H.;In addition to providing new pure-refrigerant and refrigerant/oil property data, a comparison of the performance of five mixture models is undertaken, namely: the Wilson model, NRTL, UNIQUAC, Heil, and Raoult's law. Overall, the Heil model provides the best agreement in pressure predictions for R-1234ze(E)/RL68H mixtures, with RMS deviations less than 0.5%, while NRTL RMS deviations are less than 1%. However, comparable performance was found for the much simpler Raoult's law, with increased deviations at the highest oil concentration. Model sensitivity and applicability of Raoult's law for refrigerant/oil mixtures in general are investigated.;The experimental data and modeling results presented are especially valuable for engineers working in the automotive air-conditioning and refrigeration industries. The refrigerant R-1234ze(E) is one of the leading alternatives for replacing R-134a and is a member of the HFO family of chemicals that includes other low-GWP refrigerants. Accurate models for the new refrigerants and refrigerant/oil mixtures are essential for designing and analyzing refrigeration and air-conditioning systems with reduced environmental impact.
机译:测量了新的气液平衡数据(P-T-x)和新兴的低GWP(全球变暖潜能)制冷剂R-1234ze(E)和多元醇酯(POE)油RL68H的二元混合物的液体密度。给出了在-10至60°C的温度范围内0至0.85的油质量分数的数据,并将结果与​​R-134a与RL68H的混合物的性能进行了比较;此外,还提供了新型的纯制冷剂以及制冷剂/油的特性数据,对五个混合模型的性能进行了比较,即:威尔逊模型,NRTL,UNIQUAC,海尔和拉乌尔定律。总体而言,Helil模型在R-1234ze(E)/ RL68H混合物的压力预测中提供了最佳的一致性,RMS偏差小于0.5%,而NRTL RMS偏差小于1%。但是,对于更简单的拉乌尔定律,发现了可比的性能,在最高油浓度下偏差增加了。一般而言,研究了劳尔定律对制冷剂/机油混合物的模型敏感性和适用性。所给出的实验数据和建模结果对从事汽车空调和制冷行业的工程师特别有价值。 R-1234ze(E)制冷剂是替代R-134a的主要替代产品之一,并且是包括其他低GWP制冷剂的HFO化学品家族的成员。新型制冷剂和制冷剂/油混合物的准确模型对于设计和分析对环境影响较小的制冷和空调系统至关重要。

著录项

  • 作者

    Bock, Jessica.;

  • 作者单位

    University of Illinois at Urbana-Champaign.;

  • 授予单位 University of Illinois at Urbana-Champaign.;
  • 学科 Mechanical engineering.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 131 p.
  • 总页数 131
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:52:23

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