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Comparative Study on Steady and Unsteady Flow in a Centrifugal Compressor Stage

机译:离心式压缩机阶段稳态和不稳定流动的比较研究

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摘要

Steady Reynolds-averaged Navier-Stokes (RANS) simulation with the mixing-plane approach is the most common procedure to obtain the performance of a centrifugal compressor in an industrial development process. However, the accurate prediction of complicated flow fields in centrifugal compressors is the most significant challenge. Some phenomena such as the impeller-diffuser flow interaction generates the unsteadiness which can affect the steady assumption. The goal of this study is to investigate the differences between the RANS and URANS simulation results in a centrifugal compressor stage. Simulations are performed at three operating points: near surge (NS), design point (DP), and near choke (NC). The results show that the RANS simulation can predict the overall performance with reasonable accuracy. However, the differences between the RANS and URANS simulation are quite significant especially in the region that the flows are highly unsteady or nearly separated. The RANS simulation is still not very accurate to predict the time-dependent quantities of the flow structure. It shows that the URANS calculations are necessary to predict the detailed flow structures and performance. The phenomena and mechanisms of the complex and highly unsteady flow in the centrifugal compressor with a vaned diffuser are presented and analyzed in detail.
机译:使用混合平面方法的稳定雷诺瓦斯平均Navier-Stokes(Rans)仿真是最常见的过程,以获得在工业开发过程中的离心压缩机的性能。然而,离心式压缩机中复杂的流场的精确预测是最重要的挑战。一些现象,例如叶轮 - 扩散器流动相互作用产生可能影响稳定假设的不稳定性。本研究的目标是调查RANS和URANS模拟导致离心压缩机阶段的差异。仿真在三个操作点执行:近浪涌(NS),设计点(DP)和近扼流圈(NC)。结果表明,RAN仿真可以采用合理的准确度预测整体性能。然而,Rans和urans模拟之间的差异非常重要,特别是在流量高度不稳定或几乎分开的区域中非常重要。 RANS模拟仍然不是非常准确的,以预测流动结构的时间依赖性数量。它表明尿素计算是预测详细的流动结构和性能的必要条件。将离心式压缩机中的复合物和高度不稳定的流动的现象和机制进行详细介绍和分析。

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