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Experimental and Computational Analysis of the Unstable Flow Structure in a Centrifugal Compressor with a Vaneless Diffuser

机译:无径向扩散器的离心式压缩机中不稳定流动结构的实验和计算分析

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摘要

Abstract The unstable flow phenomena in compressors, such as stall and surge, are closely related to the efficiency and the operating region. It is indispensable to capture the unstable flow structure in compressors and understand the mechanism of flow instability at low flow rates. Cooperated with the manufacturer, an industrial centrifugal compressor with a vaneless diffuser is tested by its performance test rig and our multi-phase dynamic measurement system. Many dynamic pressure transducers are circumferentially mounted on the casing surface at seven radial locations, spanning the impeller region and the diffuser inlet region. The pressure fields from the design condition to surge are measured in details. Based on the multi-phase dynamic signals, the original location of stall occurring can be determined. Meanwhile, the information of the unstable flow structure is obtained, such as the circumferential mode and the propagating speed of stall cells. To get more details of the vortex structure, an unsteady simulation of this tested compressor is carried out. The computational result is well matched with the experimental result and further illustrates how the unstable flow structure in the impeller region gradually affects the stability of the total machine at low flow rates. The dynamic mode decomposition (DMD) method is applied to get the specific flow pattern corresponding to the stall frequency. Both experimental and computational analysis show that the flow structure at a particular radial location in the impeller region has a great impact on the stall and surge. Some differences between the computational and experimental result are also discussed. Through these two main analytical methods, an insight into the unstable flow structure in an industrial compressor is gained. The result also plays a crucial role in the guidance of the compressor stabilization techniques.
机译:摘要压缩机中的不稳定流现象,如摊位和浪涌,与效率和手术区域密切相关。在压缩机中捕获不稳定的流动结构是必不可少的,并且了解低流速下的流量不稳定性的机制。与制造商合作,由其性能试验台和我们的多相动态测量系统进行无差漫射器的工业离心式压缩机。许多动态压力换能器在七个径向位置处周向安装在壳体表面上,跨越叶轮区域和漫射器入口区域。从设计条件到浪涌的压力场进行详细测量。基于多相动态信号,可以确定出现的失速的原始位置。同时,获得不稳定的流动结构的信息,例如圆周模式和失速电池的传播速度。为了获得涡流结构的更多细节,执行该测试压缩机的不稳定模拟。计算结果与实验结果充分匹配,进一步说明了叶轮区域中不稳定的流动结构如何逐渐地影响总机器的稳定性。应用动态模式分解(DMD)方法以获得对应于失速频率的特定流模式。两个实验和计算分析都表明,叶轮区域中特定径向位置的流动结构对档位和浪涌产生了重大影响。还讨论了计算和实验结果之间的一些差异。通过这两个主要的分析方法,获得了工业压缩机中不稳定的流动结构的洞察。结果也在压缩机稳定技术的指导中起着至关重要的作用。

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  • 作者

    Xiang Xue; Tong Wang;

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  • 年度 2019
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  • 原文格式 PDF
  • 正文语种 eng
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