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THE EFFECTS OF OIL IN CIRCULATION ON THE PERFORMANCE OF AN AUTOMOTIVE AIR CONDITIONING SYSTEM

机译:循环油对汽车空调系统性能的影响

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An automotive air conditioning system was subjected to varying percentages of oil in circulation (OIC) to investigate its impact on the evaporator, the condenser, and cycle performance. Since automotive air conditioning systems do not typically use oil separators, the compressor lubricant circulates through the system and effects evaporator, condenser and cycle performance. The OIC of the system was controlled by means of an oil separator installed in a parallel line at the compressor outlet allowing variable amounts of refrigerant to pass through the separator. The separated oil was returned upstream of the compressor inlet. It was found that the amount of OIC had an impact on the air conditioning system's performance. The information presented allows the designer to judge the performance merits of installing an oil separator in an actual automotive air conditioning system of the type that was being simulated The test system was built on a workbench to facilitate installation of various sensors to measure temperatures, pressures, relative humidity, flow rates, and power consumption. The workbench was placed across two environmental chambers such that the environmental conditions at the evaporator and condenser could be independently controlled. A test matrix of varying refrigerant flow rates, air flow rates, environmental conditions, and OIC were designed to simulate a range of car speed conditions that would be encountered in practice. An analysis was performed on the data collected from the workbench and the equations used in that analysis are presented in the paper. Although the results show some increase in heat transfer performance and cycle efficiency the overall improvements were moderate.
机译:汽车空调系统经受了不同百分比的循环油(OIC),以研究其对蒸发器,冷凝器和循环性能的影响。由于汽车空调系统通常不使用油分离器,因此压缩机润滑剂在系统中循环并影响蒸发器,冷凝器和循环性能。该系统的OIC由安装在压缩机出口处平行管线中的油分离器控制,该油分离器允许可变数量的制冷剂通过分离器。分离出的油返回到压缩机入口的上游。发现OIC的量对空调系统的性能有影响。所提供的信息使设计人员能够判断在模拟的实际汽车空调系统中安装油分离器的性能优劣。该测试系统建立在工作台上,以方便安装各种传感器来测量温度,压力,相对湿度,流速和功耗。工作台跨两个环境室放置,因此可以独立控制蒸发器和冷凝器的环境条件。设计了一个由变化的制冷剂流量,空气流量,环境条件和OIC组成的测试矩阵,以模拟实际中可能遇到的一系列汽车速度条件。对从工作台收集的数据进行了分析,并在本文中介绍了该分析中使用的方程式。尽管结果表明传热性能和循环效率有所提高,但总体改善还是中等的。

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