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首页> 外文期刊>International Journal of Rotating Machinery >Effect of the Unsteadiness on the Diffuser Flow in a Transonic Centrifugal Compressor Stage
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Effect of the Unsteadiness on the Diffuser Flow in a Transonic Centrifugal Compressor Stage

机译:跨音速离心压缩机级中的不稳定性对扩散器流量的影响

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The study is focused on the analysis of the flow structure within the vaned diffuser of a transonic high-pressure centrifugal compressor stage. The analyzed time-dependent flow field comes from unsteady computations of the stage using a 3D Navier-Stokes code with a phase-lagged technique, at an operating point close to the design point. A good comparison with available experimental data allowed the use of CFD for investigating the details of the flow in order to assess the effect of the unsteadiness in the diffuser flow development. Applying various data processing techniques, it is shown that the unsteadiness is due to the jet and wake flow structure emerging from the radial impeller and to the pressure waves brought about by the interaction between the vane bow shock wave and the impeller blade. The interaction between the pressure waves and the vane pressure side boundary layer leads to a pulsating behavior of separated bubbles within the diffuser. The pressure waves are similar in shape and strength whatever the blade height. The observed change in the flow field from hub to tip is due to migration of the low momentum fluid contained in the wake toward the pressure side/hub corner.
机译:该研究的重点是对跨音速高压离心压缩机级叶片式扩压器内的流动结构进行分析。分析的与时间有关的流场来自于在接近设计点的工作点上使用具有相位滞后技术的3D Navier-Stokes代码对平台进行的不稳定计算。与可用的实验数据进行了很好的比较,从而允许使用CFD来研究流的细节,以评估不稳定性对扩散器流发展的影响。应用各种数据处理技术表明,不稳定是由于径向叶轮产生的射流和尾流结构,以及由于叶片弓形激波和叶轮叶片之间的相互作用所引起的压力波。压力波和叶片压力侧边界层之间的相互作用导致扩散器内分离的气泡的脉动行为。无论叶片高度如何,压力波的形状和强度都相似。从毂到尖端的流场中观察到的变化是由于尾流中包含的低动量流体向压力侧/毂角的迁移。

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