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An Investigation of Surge in a High-Speed Centrifugal Compressor Using Digital PIV

机译:使用数字PIV的高速离心压缩机喘振的研究

摘要

Compressor stall is a catastrophic breakdown of the flow in a compressor, which can lead to a loss of engine power, large pressure transients in the inlet/nacelle and engine flameout. The implementation of active or passive strategies for controlling rotating stall and surge can significantly extend the stable operating range of a compressor without substantially sacrificing performance. It is crucial to identify the dynamic changes occurring in the flow field prior to rotating stall and surge in order to successfully control these events. Generally, pressure transducer measurements are made to capture the transient response of a compressor prior to rotating stall. In this investigation, Digital Particle Imaging Velocimetry (DPIV) is used in conjunction with dynamic pressure transducers to simultaneously capture transient velocity and pressure measurements in the non-stationary flow field during compressor surge. DPIV is an instantaneous, planar measurement technique which is ideally suited for studying transient flow phenomena in high speed turbomachinery and has been used previously to successfully map the stable operating point flow field in the diffuser of a high speed centrifugal compressor. Through the acquisition of both DPIV images and transient pressure data, the time evolution of the unsteady flow during surge is revealed.
机译:压缩机失速是压缩机中流量的灾难性故障,可能导致发动机功率损失,进气/机舱中的大压力瞬变和发动机熄火。用于控制旋转失速和喘振的主动或被动策略的实施可以显着扩展压缩机的稳定工作范围,而不会显着降低性能。至关重要的是在旋转失速和喘振之前确定流场中发生的动态变化,以成功控制这些事件。通常,进行压力传感器测量以捕获旋转失速之前压缩机的瞬态响应。在这项研究中,数字粒子成像测速技术(DPIV)与动态压力传感器结合使用,可同时捕获压缩机喘振期间非平稳流场中的瞬时速度和压力测量结果。 DPIV是一种瞬时的平面测量技术,非常适合研究高速涡轮机械中的瞬态流动现象,并且先前已成功用于在高速离心压缩机的扩压器中成功绘制稳定的工作点流场。通过同时采集DPIV图像和瞬态压力数据,揭示了喘振过程中非定常流动的时间演变。

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