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Flow Visualization of Centrifugal Pump by the Combination of LIF and PIV

机译:LIF和PIV结合对离心泵的流量可视化

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摘要

The visual experimental system for the centrifugal pump was established. The mock centrifugal pump with six curving semi-open impellers was manufactured by polymethyl methacrylate. The flow characteristics inside the mock centrifugal pump was studied by the combination of laser induced fluorescence (LIF) and particle image velocimetry (PIV). The polyamide resin particles were dissolved into the fluid of the circulation for PIV analysis, and fluorescent dye rhodamine B was head-on injected to the impellers for LIF analysis. The front plane of the impellers was covered by Nd: YAG laser sheet, one CCD camera collected the reflected laser light from the particles. Synchronously, another camera collected the fluorescence of rhodamine B. The velocity distribution characteristic was presented, and the time evolution of injected dye in the channel between impeller and septum was obtained. The inlet fluid moved circumferentially along the impeller under centrifugal force, the central region had smaller velocity. The injected dye gathered into blocks near the central area, and was evenly distributed near the edge of the pump impellers. The combination of LIF and PIV was proved to be credible method in the research of centrifugal pump.
机译:建立了离心泵的可视化实验系统。具有六个弯曲半开式叶轮的模拟离心泵由聚甲基丙烯酸甲酯制造。通过结合激光诱导荧光(LIF)和粒子图像测速(PIV)研究了模拟离心泵内部的流动特性。将聚酰胺树脂颗粒溶解到循环液中进行PIV分析,然后将荧光染料若丹明B正面注入到叶轮中进行LIF分析。叶轮的前表面覆盖有Nd:YAG激光片,一台CCD相机收集了颗粒反射的激光。同时,另一台摄像机收集了若丹明B的荧光。给出了速度分布特征,并获得了叶轮和隔片之间通道中注入染料的时间演化。入口流体在离心力的作用下沿叶轮圆周运动,中心区域的速度较小。注入的染料在中心区域附近聚集成块,并均匀分布在泵轮的边缘附近。 LIF和PIV的组合被证明是离心泵研究中的可靠方法。

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