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Study on solid–liquid two-phase flow characteristics of centrifugal pump impeller with non-smooth surface

机译:非光滑表面离心泵叶轮固体两相流动特性研究

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In order to improve the working performance of the solid–liquid two-phase flow in centrifugal pump, the current study attempted to probe into the influence of the solid-phase particle concentration on the characteristics of centrifugal pump and the drag reduction characteristics of impeller on non-smooth surface. Based on the principle of bionics and with MP80-160 single-stage single-suction centrifugal pump as a model, the current study adopted Eulerian model to carry out numerical simulation by building the pit-type non-smooth surface on the impeller blades. The results show that the higher concentration of solid-phase particles leads to the more centrifugal pump hydraulic head and decreasing efficiency. The pit type in the layout of the non-smooth surface area shows a better drag reduction effect. Shear stress of wall inside the pit is much less than that on the smooth surface, which can effectively improve the working performance of the solid–liquid two-phase flow in centrifugal pump.
机译:为了提高离心泵中固液两相流的工作性能,目前的研究试图探讨固相颗粒浓度对离心泵特性的影响及叶轮的阻力减少特性非光滑的表面。基于仿生学原理和MP80-160单级单吸离心泵作为模型,目前的研究采用欧拉模型通过在叶轮叶片上构建坑式非光滑表面进行数值模拟。结果表明,较高浓度的固相颗粒导致离心泵液压头和效率降低。非光滑表面积布局中的凹坑类型显示出更好的减阻效果。坑内壁的剪切应力远小于光滑表面上的墙壁,这可以有效地提高离心泵中的固液两相流的工作性能。

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