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Optimization Design and Internal Flow Field Study of Open-Design Vortex Pump

机译:开放式涡旋泵的优化设计与内部流动场研究

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To determine the influences of the main structural parameters on open-design vortex pump performance, optimize the vortex pump performance, and reduce the running vibration and improve stability, orthogonal testing method was introduced in this paper. The selected main factors included impeller outer diameter ( D 2 ), impeller outlet width ( b 2 ), outlet setting angle of impeller ( β 2 ), and inlet setting angle of impeller ( β 1 ), and the nine types of impellers were coded according to orthogonal table. After obtaining the preliminarily optimum value range for each factor through range analysis, comprehensive analysis was employed based on the orthogonal test to investigate the main factors and identify the primary and secondary influencing factors affecting the performance of the vortex pump. An optimization scheme was obtained for further design. The results show that the numerical calculation results of the optimization scheme pump are in good agreement with the test results, and it shows the feasibility of the numerical calculation method. The testing results showed that efficiency and head of the optimal model were 4.2% and 9?m higher than those of the prototype model, respectively. Improved efficiency and head met the design requirements. The orthogonal testing method proved the feasibility of performance optimization of the vortex pump. The backflow occurs at the pump entrance and rotates in the same direction with impeller. It moves along the pipe wall from the lateral cavity to the inlet and encourters with the approaching flow.
机译:为了确定主要结构参数对开放式设计涡流泵性能的影响,优化涡旋泵性能,并减少运行振动,提高稳定性,本文介绍了正交试验方法。所选的主要因素包括叶轮外径(D 2),叶轮出口宽度(B 2),叶轮(β2)的出口设定角,以及叶轮(β1)的入口设定角度,以及九种类型的叶轮进行编码根据正交表。在通过范围分析获得每个因子的预先最佳值范围后,基于正交试验采用综合分析,以研究影响涡流泵性能的主要和二次影响因素。获得了进一步设计的优化方案。结果表明,优化方案泵的数值计算结果与测试结果吻合良好,显示了数值计算方法的可行性。测试结果表明,最佳模型的效率和头部分别高于原型模型的4.2%和9?m。提高效率和头部符合设计要求。正交检测方法证明了涡流泵的性能优化的可行性。回流发生在泵入口处并与叶轮以相同的方向旋转。它沿管壁从横向腔移动到入口,并通过接近的流动促使。

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