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A lumped-parameter thermal model for scroll compressors including the solution for the temperature distribution along the scroll wraps

机译:涡旋压缩机的集总参数热模型,包括涡旋壁沿温度分布的解决方案

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摘要

A lumped-parameter thermal model is presented to predict the temperature in different chambers and components inside scroll compressors with particular attention to gas superheating in the suction process. Thermal resistances between the components are based on global heat transfer conductances, whereas conduction heat transfer through the scroll wraps is solved via a one-dimensional finite volume method. The thermal model was coupled to a thermodynamic model of the compression cycle and then applied to simulate the compressor performance under different conditions of speed and pressure ratio. The model was able to correctly predict the compressor temperature for operating conditions within the range of those adopted for its calibration. The results showed a strong coupling between the compressor thermal profile and the temperatures of the motor and lubricating oil. It has also been found that heat conduction through the scroll wraps reduces slightly the discharge temperature. (C) 2014 Elsevier Ltd and IIR. All rights reserved.
机译:提出了集总参数热模型,以预测涡旋压缩机内不同腔室和组件中的温度,并特别注意吸气过程中的气体过热。组件之间的热阻基于整体热传导率,而通过涡旋涡卷的传导热传递是通过一维有限体积方法解决的。将热模型与压缩循环的热力学模型耦合,然后将其用于模拟在不同速度和压力比条件下的压缩机性能。该模型能够在其校准所采用的温度范围内正确预测压缩机的温度。结果表明,压缩机的温度曲线与电机和润滑油的温度之间存在很强的耦合。还已经发现,通过涡卷的热传导稍微降低了排出温度。 (C)2014 Elsevier Ltd和IIR。版权所有。

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