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Comparison of Flow Fields in a Centrifugal Pump Among Different Tracer Particles by Particle Image Velocimetry

机译:示踪测速法比较不同示踪剂粒子在离心泵中的流场

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This paper presents an experimental investigation of the flow fields in a centrifugal pump by particle image velocimetry (PIV) technique with two different tracer particles, all designed for the same operating point. In order to systematically analyze the tracking characteristics of tracer particles once used in centrifugal pump by Basset-Boussinesq-Oseen (BBO) equation, aluminum powder (AP, with high density ratio and small diameter) and hollow glass spheres (HGS, with neutral density and large diameter) were selected. The velocity fields obtained for AP and HGS were presented and compared, in order to enhance the understanding of their tracking properties in rotating impeller. The results show that AP and HGS give nearly the same phase-averaged velocity fields except at two small regions. BBO extended equation by the phase average theory in a centrifugal pump was applied to explain the first difference, namely, why the velocity of HGS is higher than that of AP in the low-speed zone. In addition, the mean vorticity distributions for AP and HGS show high strength velocity micelles with different directions of development and dissemination, which causes the second difference in energy exchange. As a consequence, HGS tends to conglomerate closer to the pressure side (PS) near the impeller outlet than AP.
机译:本文通过粒子图像测速技术(PIV)技术对离心泵中的流场进行了实验研究,该技术具有两种不同的示踪剂颗粒,均设计用于相同的工作点。为了通过Basset-Boussinesq-Oseen(BBO)方程系统地分析离心泵中曾经使用过的示踪剂颗粒的跟踪特性,铝粉(AP,高密度比和小直径)和空心玻璃球(HGS,中性密度)和大直径)。介绍并比较了AP和HGS所获得的速度场,以加深对旋转叶轮中它们的跟踪特性的了解。结果表明,除了两个小区域外,AP和HGS给出几乎相同的相位平均速度场。运用离心泵中的相位平均理论的BBO扩展方程来解释第一个差异,即为什么HGS的速度在低速区要比AP的速度高。此外,AP和HGS的平均涡度分布显示出具有不同发展和传播方向的高强度速度胶束,这引起了能量交换的第二个差异。结果,HGS趋向于聚集在叶轮出口附近而不是AP处靠近压力侧(PS)。

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