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Reynolds-number-dependent efficiency characterization of a micro-scale centrifugal compressor using non-conventional working fluids

机译:使用非常规工作流体的微型离心压缩机的雷诺数依赖性效率表征

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The selection of working fluids other than air is a key issue in improving the efficiency of new thermodynamic cycles intended for low-to-moderate temperature small power plants. The aim of this paper is to study whether the low efficiency typical of small turbomachinery is still a problem when using alternative fluids. Based on a new design of power cycles named balanced hybrid Rankine-Brayton cycles, five different fluids were selected as potential working fluids: carbon dioxide, propane, isobutane, pentafluoroethane and sulfur hexafluoride. Dimensional analysis was used to compare the performances of a micro-scale centrifugal compressor working in homologous points where the efficiency variation depends only on the Reynolds-number (Re). The influence of Re on efficiency was calculated by means of four different methods for comparative purposes. Numerical simulations were also carried out in order to validate the methodological approach proposed. The results show the efficiency variations as a function of Re for increasing fluid densities. All the non-conventional fluids studied provide better performance in terms of efficiency than air. Particularly, isobutane and propane have been identified as potential working fluids candidates for the aforementioned innovative power cycle.
机译:选择除空气之外的其他工作流体是提高旨在用于中小型温度发电厂的新型热力循环效率的关键问题。本文的目的是研究使用替代流体时小型涡轮机械的典型低效率是否仍然存在问题。基于一种称为平衡混合式兰金-布雷顿循环的新型动力循环设计,选择了五种不同的流体作为潜在的工作流体:二氧化碳,丙烷,异丁烷,五氟乙烷和六氟化硫。使用尺寸分析来比较在相同点工作的微型离心压缩机的性能,在这些点上效率变化仅取决于雷诺数(Re)。为了比较,通过四种不同的方法计算了Re对效率的影响。为了验证所提出的方法学方法,还进行了数值模拟。结果表明,随着流体密度的增加,效率随Re的变化而变化。就效率而言,所有研究的非常规流体都比空气具有更好的性能。特别地,已将异丁烷和丙烷确定为上述创新动力循环的潜在工作流体候选物。

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