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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Design optimization of a rolling piston compressor for refrigerators
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Design optimization of a rolling piston compressor for refrigerators

机译:冰箱滚动活塞压缩机的设计优化

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摘要

In this paper, the performance of a rolling piston compressor has been optimized under preset operational conditions and design constraints by employing a multi-variable, direct search, constrained optimization technique. A mathematical model for the compressor was first formulated. The model accounts for geometrical configuration, thermodynamics effects, valve dynamics, flow and mechanical considerations. The accuracy of the model was verified by comparing its prediction with measured results. The model was then linked with an optimization algorithm to search for a combination of some six design dimensions and seven sets of design constraints, for an optimum compressor performance with minimum mechanical losses. The results of the study suggested that for a given compressor swept volume, a proper combination of the compressor design dimensions can lead to significant compressor performance. The theoretical study predicted that a 50% reduction in mechanical loss is possible and this brings about an improvement in the coefficient of performance of the compressor of more than 14%.
机译:在本文中,通过采用多变量,直接搜索,约束优化技术,在预设的运行条件和设计约束条件下优化了滚动活塞压缩机的性能。首先建立了压缩机的数学模型。该模型考虑了几何构型,热力学效应,阀门动力学,流量和机械因素。通过将模型的预测结果与测量结果进行比较,验证了模型的准确性。然后,将模型与优化算法链接,以搜索约六个设计尺寸和七组设计约束的组合,以在最小的机械损耗的情况下获得最佳的压缩机性能。研究结果表明,对于给定的压缩机扫气量,适当组合压缩机设计尺寸可导致显着的压缩机性能。理论研究预测,机械损失降低50%是可能的,这将使压缩机的性能系数提高14%以上。

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