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Effect of the Radial Pressure Gradient on the Secondary Flow Generated in an Annular Turbine Cascade

机译:径向压力梯度对环形涡轮叶栅中产生的二次流的影响

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This paper introduces an investigation of the effect of radial pressure gradient on the secondary flow generated in turbine cascades. Laboratory measurements were performed using an annular sector cascade which allowed the investigation using relatively small number of blades. The flow was measured upstream and downstream of the cascade using a calibrated five-hole pressure probe. The three-dimensional Reynolds Averaged Navier Stokes equations were solved to understand flow physics. Turbulence was modeled using eddy-viscosity assumption and the two-equation Shear Stress Transport (SST)k-ωmodel. The results obtained through this study showed that the secondary flow is significantly affected by the pressure gradient along blade span. The experimental measurements and the numerical calculations predicted passage vortex near blade hub which had larger and stronger values than that predicted near blade tip. The loss distribution revealed that secondary flow loss was concentrated near blade hub. It is recommended that attempts of reducing secondary flow in annular cascade should put emphasis on the passage vortex near the hub.
机译:本文介绍了径向压力梯度对涡轮机叶栅中产生的二次流的影响的研究。使用环形扇形叶栅进行实验室测量,这允许使用相对较少数量的叶片进行研究。使用校准的五孔压力探头在叶栅的上游和下游测量流量。解决了三维雷诺平均Navier Stokes方程,以了解流动物理学。湍流是使用涡粘性假设和两方程剪切应力传递(SST)k-ω模型建模的。通过这项研究获得的结果表明,次级流量受到沿叶片跨度的压力梯度的显着影响。实验测量和数值计算预测了叶片轮毂附近的通过涡流,该涡旋具有比叶片尖端附近的预测的更大和更强的值。损失分布表明,二次流损失集中在叶片毂附近。建议尝试减少环形叶栅中的二次流,应将重点放在轮毂附近的通道涡旋上。

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