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A Heat Transfer Model Combining Differential and Integral Formulations for Thermal Analysis of Reciprocating Compressors

机译:结合差分和整体公式的传热模型用于往复式压缩机的热分析

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摘要

Heat transfer in hermetic compressors is a complex phenomenon strongly affected by fluid flow inside and outside the compression chamber and by the efficiency of both the electrical motor and the crankshaft mechanism. This paper presents a heat transfer model for thermal analysis of reciprocating compressors formed by combining a lumped formulation for convective heat transfer in some selected regions and a three-dimensional differential formulation for heat conduction in the solid components. Convective heat transfer coefficients were evaluated from correlations available in the literature so as to avoid calibration based on experimental data. The model was applied to a reciprocating compressor operating in a fully periodic condition and predictions for temperature distribution, heat transfer and volumetric efficiency were seen to be in reasonable agreement with measurements.
机译:封闭式压缩机中的热传递是一个复杂的现象,受压缩室内外的流体流动以及电动机和曲轴机构的效率的强烈影响。本文提出了一种用于往复式压缩机热分析的传热模型,该模型是通过组合用于某些选定区域对流传热的集总公式和用于固体成分传热的三维差分公式而形成的。对流传热系数是根据文献中提供的相关性进行评估的,以避免基于实验数据进行校准。该模型被应用于在全周期条件下运行的往复式压缩机,温度分布,传热和容积效率的预测与测量值合理地吻合。

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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