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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Experimental and Numerical Investigation of Flow Characteristics Near Casing in an Axial Flow Compressor Rotor at Stable and Stall Inception Conditions
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Experimental and Numerical Investigation of Flow Characteristics Near Casing in an Axial Flow Compressor Rotor at Stable and Stall Inception Conditions

机译:轴流压气机转子在稳态和失速条件下壳体附近流动特性的实验和数值研究

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摘要

Casing instantaneous pressure measurements and full-annulus unsteady simulations were undertaken to analyze flow characteristics near casing at stable and stall inception conditions in an axial flow compressor rotor, and the objective was to establish its linkage with the stall inception process. The measured flow characteristic at near-stall stable operating conditions was the appearance of rotating instability (RI), which attributed to the activity of an unsteady flow with varying frequency. A similar flow characteristic was found in the simulated near-stall stable flow conditions, and detailed analyses of instantaneous flow field indicated the formation and activity of tip secondary vortex could be flow mechanism for the appearance of RI as far as nonuniform tip loading distribution in measurements was concerned. The measured flow characteristic before spike emergence was still the activity of RI. However, it was submerged into flow field accompany by the emergence of spike. The simulated stall inception process was similar to that from measurement, and further analyses of instantaneous flow field established the causal linkage between RI and stall inception process for the test rotor.
机译:进行套管瞬时压力测量和全环非定常模拟,以分析轴流压气机转子在稳定和失速开始条件下套管附近的流动特性,目的是建立其与失速开始过程的联系。在接近失速的稳定运行条件下测得的流动特性为旋转不稳定性(RI)的出现,这归因于频率不稳定的流动的不稳定。在模拟的近失速稳定流动条件下也发现了类似的流动特性,并且对瞬时流场的详细分析表明,只要测量中的尖端载荷分布不均匀,尖端次涡流的形成和活动可能是RI出现的流动机制。很担心。尖峰出现之前测得的流量特性仍然是RI的活性。但是,由于尖峰的出现,它被淹没在流场中。模拟的失速开始过程与测量过程相似,进一步的瞬时流场分析建立了RI与测试转子失速开始过程之间的因果关系。

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