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Numerical analysis of evaporator frosting in automotive air-conditioning system with a variable-displacement compressor

机译:可变排量压缩机在汽车空调系统中蒸发器结霜的数值分析

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摘要

A steady-state mathematical model of. the automotive air conditioning system with a variable-displacement compressor (VDC) is developed to find out the reasons causing evaporator frosting. To validate the system model, a test system is established and the simulated results are compared with experimental data: the predicted results agree well with the experimental data. After analyzing the influence of different factors with the system model, three reasons causing evaporator frosting have been found and corresponding coun-termeasures have been proposed: (1) the system performance band caused by the frictional forces among the moving components of the VDC can contribute to evaporator frosting, which may be avoided by decreasing the frictional forces between the moving components while designing, manufacturing and operating the VDC; (2) the mismatch between the parameters of the control valve and the resistance pressure of suction pipe of the condenser size can also contribute to evaporator frosting and the control valve with a proper initial compressive force should be selected for a given suction pipe and condenser; and (3) a higher air temperature at the condenser's inlet may cause evaporator frosting one needs to consider the influence of the air temperature at the condenser inlet while designing the new control valve.
机译:的稳态数学模型。开发了带有可变排量压缩机(VDC)的汽车空调系统,以找出导致蒸发器结霜的原因。为了验证系统模型,建立了测试系统,并将仿真结果与实验数据进行了比较:预测结果与实验数据吻合良好。在通过系统模型分析了不同因素的影响后,发现了造成蒸发器结霜的三个原因,并提出了相应的对策:(1)由VDC运动部件之间的摩擦力引起的系统性能带可以做出贡献。蒸发器结霜,这可以通过在设计,制造和运行VDC时减小运动部件之间的摩擦力来避免; (2)控制阀的参数与冷凝器尺寸的吸管的阻力之间的不匹配也会导致蒸发器结霜,对于给定的吸管和冷凝器,应选择具有适当初始压缩力的控制阀; (3)冷凝器进口处较高的空气温度可能会导致蒸发器结霜。在设计新的控制阀时,需要考虑冷凝器入口处的空气温度的影响。

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