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An experimental analysis of the effect of refrigerant charge level on an automotive refrigeration system

机译:制冷剂充注量对汽车制冷系统影响的实验分析

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The performance of an automotive refrigeration system is dependent on the refrigerant charge level. Due to inevitable leaks in the system, the amount of refrigerant will decrease over time and thus ultimately reduce the system's performance. A reduction in the amount of refrigerant charge results in excessive compressor cycling, a lower condenser pressure, a higher refrigeration temperature, and an increase in the amount of superheat. This paper identifies and quantifies the individual component losses in an automotive refrigeration system as a function of the refrigerant charge level. A second law analysis, based on nondimensional entropy generation, is carried out to quantify the thermodynamic losses. A passenger vehicle with a cycling-clutch, orifice tube refrigeration system was instrumented to measure various temperatures and pressures, and relative humidity. The data were collected at idle conditions. Thermodynamic equations, which are used to determine the system's thermal performance, are presented. The system's second law efficiency increases 26% as the amount of refrigerant charge decreases by 44%. Also the individual component losses are quantified as a function of the refrigerant charge level. The compressor and the condenser losses account for the largest percentage of the total losses, and are of similar magnitude. The evaporator-accumulator and the orifice tube losses account for a smaller percentage of the total losses, and are also of similar magnitude. With a reduction in the refrigerant charge level of 44%, the losses in the compressor, the condenser, the evaporator-accumulator, and the orifice tube decrease 13%, 8%, 10%, and 33%, respectively.
机译:汽车制冷系统的性能取决于制冷剂充注量。由于系统中不可避免的泄漏,制冷剂的数量将随着时间的流逝而减少,从而最终降低系统的性能。制冷剂充注量的减少导致过度的压缩机循环,较低的冷凝器压力,较高的制冷温度以及过热量的增加。本文根据制冷剂充注量确定并量化了汽车制冷系统中的各个组件损失。进行基于无量纲熵生成的第二定律分析,以量化热力学损失。对装有循环离合器孔板制冷系统的乘用车进行了测量,以测量各种温度和压力以及相对湿度。数据是在空闲条件下收集的。介绍了用于确定系统热性能的热力学方程。随着制冷剂充注量减少44%,系统的第二定律效率提高26%。而且,各个组分的损失根据制冷剂充注量来量化。压缩机和冷凝器的损耗在总损耗中所占的比例最大,并且大小相似。蒸发器-蓄能器和节流孔管的损耗在总损耗中所占的比例较小,并且幅度也相似。随着制冷剂充注量减少44%,压缩机,冷凝器,蒸发器-蓄能器和节流管的损失分别减少了13%,8%,10%和33%。

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