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Experimental Investigation of an Automobile Air-Conditioning System using Integrated Brushless Direct Current Motor Rotary Compressor

机译:集成无刷直流电动机旋转压缩机的汽车空调系统的实验研究

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The present study presents an experimental investigation on the effect of condenser air inlet temperature and dimensionless parameter of X on the performance of automobile air-conditioning (AAC) system using integrated brushless direct current motor-rotary compressor and electronic expansion valve. The other components of AAC system are from original component of AAC system used for medium size passenger car. The experimental results showed that the increment of the condenser air inlet temperature and X caused an increase in condensing temperature, cooling capacity and compressor work, while decreasing the coefficient of performance (COP). Meanwhile, the evaporating temperature increase with the increment of condenser air inlet temperature, but decrease with decrement of X. In general, AAC system have to work at higher value of X in order to produce more cooling capacity, thereby increment in compressor work also occurs due to energy balance. However, at higher value of X, the COP of the system dropped due to dominant increase in compressor power, as opposed to a rise in cooling capacity. Due to this reason, the best operation of this compressor occurs at X = 4.96 for constant T5 (35ºC), or at T5 = 30ºC for constant X (4.96).
机译:本研究提供了一个实验研究,研究了冷凝器进气温度和X的无量纲参数对使用集成无刷直流电动机-旋转压缩机和电子膨胀阀的汽车空调(AAC)系统性能的影响。 AAC系统的其他组件来自用于中型乘用车的AAC系统的原始组件。实验结果表明,冷凝器进气温度和X的增加导致冷凝温度,冷却能力和压缩机工作的增加,同时降低了性能系数(COP)。同时,蒸发温度随着冷凝器进气温度的升高而增加,但随着X的降低而降低。通常,AAC系统必须在X的较高值下工作才能产生更大的冷却能力,从而压缩机的工作量也会增加由于能量平衡。但是,在X值较高时,系统的COP因压缩机功率的显着增加而下降,而不是制冷能力的提高。由于这个原因,对于常数T5(35ºC),此压缩机的最佳运行发生在X = 4.96,对于常数X(4.96),在T5 =30ºC。

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