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Experimental Investigation of Rotor-Stator Interaction in a Centrifugal Pump with Several Vaned Diffusers

机译:带有多个叶片扩压器的离心泵中转子-定子相互作用的实验研究

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摘要

This paper describes an experimental investigation of rotor-stator interaction in a centrifugal pump with several vaned diffusers. Steady and unsteady diffuser vane pressure measurements were made for a two-dimensional test impeller. Unsteady impeller blade pressure measurements were made for a second two-dimensional impeller with blade number and blade geometry identical to the two-dimensional impeller used for the diffuser vane pressure measurements. The experiments were conducted for different flow coefficients and differeent radial gaps between the impeller blade trailing edge and the diffuser vane leading edge (5 and 8 percent of the impeller discharge radius). The largest pressure fluctuations on the diffuser vanes and the impeller blades were found to be of the same order of magnitude as the total pressure rise across the pump. The largest pressure fluctuations on the diffuser vanes were observed to occur on the suction side of the vane near the vane leading edge, whereas on the impeller blades the largest fluctuations were observed to occur at the blade trailing edge. However, the dependence of the fluctuations on the flow coefficient was found to be different for te diffuser vanes and the impeller blades; on the vane suction side, the fluctuations were largest for the maximum flow coefficient and decreased with decreasing flow coefficient, whereas at the blade trailing edge, the fluctuations were smallest for the maximum flow coefficient and increased with decreasing flow coefficient. Increasing the number of the diffuser vanes resulted in a significant decrease of the impeller blade pressure fluctuations. The resulting lift on the diffuser vanes was computed from the vane pressure measurements; the magnitude of the fluctuating lift was found to be larger than the steady lift.
机译:本文描述了带有多个叶片式扩散器的离心泵中转子-定子相互作用的实验研究。对二维测试叶轮进行了稳定和不稳定的扩压器叶片压力测量。对于第二个二维叶轮进行了非定常叶轮叶片压力测量,其叶片编号和叶片几何形状与用于扩散器叶片压力测量的二维叶轮相同。针对不同的流量系数和叶轮叶片后缘与扩散器叶片前缘之间的径​​向间隙不同(叶轮排放半径的5%和8%)进行了实验。发现扩压器叶片和叶轮叶片上的最大压力波动与整个泵的总压力上升具有相同的数量级。观察到扩压器叶片上的最大压力波动发生在叶片前缘附近的叶片吸入侧,而在叶轮叶片上,观察到的最大波动出现在叶片后缘。但是,对于扩散叶片和叶轮叶片,波动对流量系数的依赖性不同。在叶片吸入侧,最大流量系数的波动最大,随着流量系数的减小而减小,而在叶片后缘,最大流量系数的波动最小,随着流量系数的减小而增大。扩压器叶片数量的增加导致叶轮叶片压力波动的显着降低。根据叶片压力测量值计算出扩压器叶片上的升力。发现波动升力的幅度大于稳定升程。

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