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Air-conditioning system head pressure spike during vehicle acceleration

机译:空调系统头部压力尖峰在车辆加速期间

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Vehicle-acceleration-induced pressure spike on the high side of an Air-Conditioning (AC) system is causing considerable concerns, especially for systems with high efficiency compressors. Head pressure surge in the order of one to two hundred pounds per square inch can be observed within a time span of 10 seconds or less. As the industry moves to meet increased system durability standards and passenger comfort requirements, clear understanding of the underlying mechanisms is required so that the impact of the head pressure spike can be minimized or eliminated. The present investigation seeks to understand the mechanisms of the head pressure spike phenomenon through both experimental and mathematical analyses. Experimentally, extensive testing has been conducted in environmental wind tunnel. Our mathematical analysis is based on the mass conservation principle for the refrigerant flow through the high side of an AC system. The analyses establish that the head pressure spike is primarily a phenomenon of mass balance between the refrigerant expansion device and the compressor. Consequently, all the variables in the AC system that have bearings over the mass flow rate through the compressor or the expansion device can all exert due influence on the magnitude of the head pressure spike. Based on the analysis, a number of practical measures are recommended for mitigating the head pressure spike, especially for scroll compressor AC systems.
机译:空调(AC)系统高侧的车辆加速感应压力尖峰导致具有相当大的问题,特别是对于具有高效压缩机的系统。在10秒或更短的时间范围内,可以观察到每平方英寸每平方英寸一到两百磅的头部压力浪涌。随着行业举办的措施,以满足增加的系统耐用性标准和乘客舒适要求,需要清楚地了解潜在机制,以便最小化或消除头部压力尖峰的影响。本研究旨在通过实验和数学分析来了解头部压力尖峰现象的机制。通过实验,在环境风洞中进行了广泛的测试。我们的数学分析基于制冷剂流过AC系统的高侧的质量守恒原理。分析建立了头部压力尖峰主要是制冷剂膨胀装置和压缩机之间的质量平衡现象。因此,通过压缩机或膨胀装置具有通过压缩机或扩展装置的壳体上的AC系统中的所有变量都可以对头部压力尖峰的大小发挥作用。基于分析,建议使用许多实际措施来缓解头部压力尖峰,特别是对于涡旋压缩机AC系统。

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