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STUDY OF PARTICULATE FLOW IN THE IMPELLER OF A SLURRY PUMP USING PIV

机译:PIV法研究淤泥泵叶轮中的颗粒流

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Particle Image Velocimetry (PIV) technique in conjunction with refractive index matching was successfully utilized to investigate the velocities of the slurry particles in the impeller of a centrifugal slurry pump. Tests were performed in an optically clear centrifugal slurry pump at speeds of 725 rpm and 1000 rpm using a slurry made up of sodium iodide solution as the working fluid and glass beads (500μm mean diameter) as solid particles at volumetric concentrations of 1%,2%, and 3%. In the intra blade region of the impeller, the highest particle velocities were obtained on the suction side of the blade and in the blade trailing edge region as the blade sweeps through and velocity magnitude increases with the pump speed. But this magnitude was less than that of circumferential velocity of the blade tip. Relative velocity plots show that flow separation takes place on the suction side of the blade in the region below the blade tip for clear fluid flow conditions. This was expected as the pump is made to operate with a slurry and not a single-phase liquid. At higher pump speeds and particle volumetric concentrations, a marked improvement in the slurry flow in the impeller is observed i.e., the recirculation zone decreases. This results from the centrifugal forces on the particles and its inertia at that speed. Also the slurry particles are pushed on the pressure side of the blade and slide along it which can result in frictional wear. These results are discussed in this paper.
机译:粒子图像测速(PIV)技术结合折射率匹配已成功地用于研究离心式渣浆泵叶轮中渣浆颗粒的速度。在光学透明的离心式泥浆泵中以725 rpm和1000 rpm的速度进行测试,使用由碘化钠溶液制成的泥浆作为工作流体,并以体积浓度为1%的玻璃珠(平均直径500μm)作为固体颗粒,2 %和3%。在叶轮的叶片内区域,随着叶片扫过并且速度幅度随泵速的增加,在叶片的吸力侧和叶片后缘区域获得了最高的颗粒速度。但是该大小小于叶片尖端的圆周速度。相对速度图显示,在清晰的流体流动条件下,在叶片尖端下方区域中的叶片吸入侧发生了流分离。可以预料到这是因为泵是用浆液而不是单相液体运行的。在较高的泵速和颗粒体积浓度下,观察到叶轮中浆液流量的显着改善,即,再循环区减少。这是由于颗粒上的离心力及其在该速度下的惯性引起的。同样,浆液颗粒被推到叶片的压力侧并沿着叶片滑动,这可能导致摩擦磨损。本文讨论了这些结果。

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