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Numerical Investigation of Flow and Heat Transfer in a Rotor-Stator Cavity with Centripetal Carbon Dioxide Through-Flow

机译:用偏心流过流量传递在转子 - 定子腔中流动和传热的数值研究

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摘要

A centrifugal carbon dioxide compressor is a kind of general machine with extensive applications. The geometry of the side chambers of the compressors can be determined by studying the rotor-stator cavity with centripetal through-flow. In this paper, numerical simulations were conducted to predict the characteristics of flow and heat transfer. Three different speeds of rotation and two axial gap widths were considered. The correlations of the core swirl ratios were determined by fitting the results for two axial gap widths. The amounts of the moment coefficients of the disk were predicted. In order to better analyze the temperature field, the radial distributions of the local heat transfer coefficient were numerically investigated. According to the simulation results, the average Nusselt number was found to be dominated by the turbulent flow parameter. It also seemed to be proportional to the moment coefficient at a fixed circumferential Reynolds number.
机译:离心二氧化碳压缩机是一种具有广泛应用的一般机器。可以通过将转子 - 定子腔与向心通流程研究来确定压缩机的侧腔的几何形状。在本文中,进行了数值模拟以预测流动和传热的特征。考虑了三种不同的旋转速度和两个轴向间隙宽度。通过将结果适用于两个轴向间隙宽度来确定核心旋流比的相关性。预测了磁盘的矩系数的量。为了更好地分析温度场,在数值上研究了局部传热系数的径向分布。根据仿真结果,发现平均南部数量由湍流参数主导。它似乎与固定的周向雷诺数的片刻系数成比例。

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