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Experimental and computer performance study of an automotive air conditioning system with alternative refrigerants

机译:具有替代制冷剂的汽车空调系统的实验和计算机性能研究

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摘要

A computational model with the objective of simulating the performance of an ideal automotive air conditioning system, working with several refrigerants, is presented. The main function of this model was to determine the most suitable alternative refrigerant for R-12. Some assumptions about the losses and ir-reversibilities were embodied in this model for more realistic results. The effects of several parameters on system performance and compatibility were investigated, including evaporating temperature, condensing temperature and compressor rotational speed. Five refrigerants were studied by this model, including R-12, R-134a, R-290, R-600a and a mixture of propane and isobutane R290/R600a (62/38, molar percentage). The model predicted that the mixture (R290/R600a) was the most suitable alternative for R-12 and that several modifications should be performed when the other alternative refrigerants are used in the R-12 system. The major part of this work was an experimental investigation for the use of R290/R600a as a drop-in alternative for R-12 in a prototype automotive air conditioning system. Ninety-two (92) tests were conducted on both refrigerants to study the effect of four parameters on system performance. These were outdoor air temperature, cooling load, compressor rotational speed and the soaking temperature. Three outdoor air temperatures were considered, 35, 40 and 50℃. Six rotational speeds were employed, 700, 1000, 1500, 2000, 2500 and 3000 rpm, whereas four cooling loads were simulated in the evaporator chamber, 1000, 2000, 3000 and 3500 W. The evaporator chamber was soaked at five temperatures, 45, 50, 55, 60 and 65℃. Two types of tests were performed, including single operation mode tests and multi-operation modes tests. There was close similarity between the performance of the R290/R600a mixture and R-12 with superiority for R-12 in the working pressures, energy consumption and the COP values, whereas the mixture (R290/R600a) outperformed R-12 in the subcooling, superheating, evaporator discharge air temperature and the cooldown time. The results of this work showed good agreement with the experimental and theoretical results available in the literature.
机译:提出了一种计算模型,其目的是模拟使用多种制冷剂的理想汽车空调系统的性能。该模型的主要功能是确定最适合R-12的替代制冷剂。为了获得更实际的结果,该模型中包含了一些有关损失和不可逆性的假设。研究了几个参数对系统性能和兼容性的影响,包括蒸发温度,冷凝温度和压缩机转速。该模型研究了五种制冷剂,包括R-12,R-134a,R-290,R-600a以及丙烷和异丁烷的混合物R290 / R600a(62/38,摩尔百分比)。该模型预测混合物(R290 / R600a)是R-12的最合适替代品,当在R-12系统中使用其他替代制冷剂时,应进行几处修改。这项工作的主要部分是对R290 / R600a在原型汽车空调系统中用作R-12的替代产品的实验研究。对这两种制冷剂进行了九十二(92)次测试,以研究四个参数对系统性能的影响。这些是室外空气温度,冷却负荷,压缩机转速和均热温度。考虑了三个室外空气温度,分别为35、40和50℃。采用六种转速,分别为700、1000、1500、2000、2500和3000 rpm,而在蒸发室中模拟了四个冷却负荷,分别为1000、2000、3000和3500W。蒸发器室在五个温度下分别浸泡45, 50、55、60和65℃。进行了两种类型的测试,包括单操作模式测试和多操作模式测试。 R290 / R600a混合物的性能与R-12在工作压力,能耗和COP值方面优于R-12,两者之间具有相似性,而混合物(R290 / R600a)在过冷中的性能优于R-12 ,过热,蒸发器排气温度和冷却时间。这项工作的结果与文献中提供的实验和理论结果吻合良好。

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