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Loss development analysis of a micro-scale centrifugal compressor

机译:微型离心压缩机的损耗发展分析

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The ever-increasing demand for more efficient energy conversion has placed designers under increasing pressure to develop processing equipment that can meet contemporary needs. It has long been known that a decreasing Reynolds number has a negative effect on centrifugal compressor efficiency. The drop in efficiency can be accounted for relatively easily in the design process using various empirical correlations. However, the correlations only account for a reduction in performance; they do not offer any consideration of the extent to how the drop in efficiency can be countered in the design process. To identify potential methods by which it is possible to improve the performance of centrifugal compressors operating at low Reynolds numbers, the loss development in centrifugal compressors with a reducing Reynolds number must be studied. Recent works on loss development, in general, have focused on the overall performance deterioration, and the differentiation of the losses originating from different causes with the reducing Reynolds number has been studied only in an axial compressor. The present paper examines loss development in a centrifugal compressor with a vaneless diffuser with respect to the Reynolds number and differentiates between the losses that originate from different causes. A new hybrid method is used to calculate the boundary layer thickness inside a complex flow field. The results show that the diffuser plays a significant role in the performance deterioration of centrifugal compressors with a low Reynolds number and should be included in the loss development analysis. A study of the boundary layers, flow fields and loss development indicates that growth in the impeller hub and diffuser boundary layers should be reduced to improve the performance of the compressor.
机译:对更高效的能量转换的不断增长的需求,使设计师承受着开发满足现代需求的加工设备的压力。众所周知,雷诺数的降低对离心压缩机的效率有负面影响。使用各种经验相关性,可以在设计过程中相对轻松地解决效率下降的问题。但是,相关性仅导致性能下降。他们没有考虑在设计过程中如何应对效率下降的程度。为了确定可能的方法,通过这些方法可以改善在低雷诺数下运行的离心压缩机的性能,必须研究在雷诺数减小的情况下离心压缩机的损耗发展。通常,有关损耗发展的最新研究通常集中在整体性能下降上,并且仅在轴流式压缩机中研究了因雷诺数减小而导致不同原因引起的损耗的区别。本文针对雷诺数研究了带有无叶片扩压器的离心压缩机中的损耗发展,并区分了由不同原因引起的损耗。一种新的混合方法用于计算复杂流场内的边界层厚度。结果表明,扩散器在低雷诺数的离心式压缩机的性能下降中起着重要作用,应纳入损失发展分析中。对边界层,流场和损失发展的研究表明,应减少叶轮毂和扩压器边界层的增长,以提高压缩机的性能。

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