刘博, 王汝金, 黄志. 转子式制冷压缩机温度场的求解模型[J]. 油气储运, 2013, 32(8): 882-886. DOI: 10.6047/j.issn.1000-8241.2013.08.017
引用本文: 刘博, 王汝金, 黄志. 转子式制冷压缩机温度场的求解模型[J]. 油气储运, 2013, 32(8): 882-886. DOI: 10.6047/j.issn.1000-8241.2013.08.017
Liu Bo, Wang Rujin, Huang Zhi. Calculation model of temperature field on rolling piston type refrigeration compressor[J]. Oil & Gas Storage and Transportation, 2013, 32(8): 882-886. DOI: 10.6047/j.issn.1000-8241.2013.08.017
Citation: Liu Bo, Wang Rujin, Huang Zhi. Calculation model of temperature field on rolling piston type refrigeration compressor[J]. Oil & Gas Storage and Transportation, 2013, 32(8): 882-886. DOI: 10.6047/j.issn.1000-8241.2013.08.017

转子式制冷压缩机温度场的求解模型

Calculation model of temperature field on rolling piston type refrigeration compressor

  • 摘要: 制冷压缩机运行过程产生的热环境对于部件及润滑油的性能至关重要,明确压缩机机壳内空间和壳体的温度场分布情况,有助于整机性能的优化,提升其可靠性。为此,对现有转子式制冷压缩机的传热模型加以改进,考虑了储液器的影响,应用集总参数法建立了带有储液器结构的转子式压缩机热场计算模型。其初始输入参数:压缩机部件几何尺寸、环境温度、压缩机输入功率、储液器入口气体温度、压缩比、压缩机电机效率、机械效率等,在明确集总模块间的传热热阻之后,通过数值手段求得各集总模块的温度。研究成果可为该类典型结构的整机温度分布求解提供理论依据。

     

    Abstract: Thermal environment formed by refrigeration compressor running has significant effect on the performances of components and lubricating oil. A clear understanding on the temperature field in the compressor case and of the case itself is helpful for its performance optimization and reliability promotion of refrigeration compressor. The existing heat transfer model of rolling piston type refrigeration compressor is modified, and lumped parameter method is used to establish a new thermal field calculation model, which considers the effect of accumulator. The initial input parameters include geometric size of compressor components, ambient temperature, compressor input power, accumulator inlet gas temperature, compression ratio, compressor motor efficiency, mechanical efficiency, etc. After the heat transfer resistance between lumped modules is identified, all the lumped module temperature can be obtained by numerical means. The research result can provide theory basis to the temperature distribution calculation of a typical rolling piston type rotary compressor.

     

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