Visualizing Test on the Distribution Rule of Coarse Particles in a Double Blade Pump

Xianfang Wu, Tian Xiao, M. Tan, Hou-lin Liu
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Abstract

As a typical fluid mechanics problem, pump blockage has always been a hot research topic. The obtaining of the distribution of coarse particles in the solid-liquid two-phase flow pump is the basis of improving its non-blocking performance. High-speed photography technique is applied to do visualizing test and research on the distribution of coarse particles in a double blade pump. The effects of particle concentration, particle density and particle diameter on the distribution of coarse particles in the solid-liquid two-phase flow pump at different phases are studied. Besides, the variation of hydraulic performance of the double blade pump under different parameters is also analyzed. The results show that the particles in the impeller mainly located in the vicinity of the blade pressure surface, and the distribution of the particles in each section of the volute is quite different. The great difference in particle density can result in obviously uneven distribution of particles. With the increase of particle diameter, particle density and particle concentration, the pump head and efficiency both decrease while the shaft power increase on the contrary. This research results can also provide a basis for the optimization design of solid-liquid two-phase flow pumps.
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双叶片泵内粗颗粒分布规律的可视化试验
泵堵塞作为典型的流体力学问题,一直是研究的热点。获得粗颗粒在固液两相流泵内的分布是提高其不堵塞性能的基础。采用高速摄影技术对双叶片泵内粗颗粒的分布进行了可视化测试和研究。研究了颗粒浓度、颗粒密度和颗粒直径对固液两相流泵内不同相粗颗粒分布的影响。此外,还分析了不同参数下双叶片泵水力性能的变化规律。结果表明:叶轮内颗粒主要分布在叶片压力面附近,且颗粒在蜗壳各截面的分布有较大差异;颗粒密度差异大,会导致颗粒分布明显不均匀。随着颗粒直径、颗粒密度和颗粒浓度的增大,泵扬程和效率减小,轴功率增大。研究结果也可为固液两相流泵的优化设计提供依据。
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