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Orthogonal Test Design and Numerical Simulation of 100QJ10 Type Deep-well Pump

机译:100QJ10型深井泵的正交试验设计与数值模拟

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In this paper in order to develop high efficiency and high head deep-well pump, a L9 (34) orthogonal experiment was performed with four factors and three values including outlet angle, outlet width, the outside diameter of impeller back shroud, etc. 9 impellers were designed. The whole flow field of new-type two-stage deep-well pump at the operating point for design was simulated by FLUENT 6.2 using the standard model, SIMPLEC algorithm, second-order upwind scheme to solve, and analyze the independent of the number of the grid. 9 groups of the efficiency and head in design scheme were obtained. The effects of geometrical parameters on efficiency, head were researched using Latin square test method. The primary and secondary factors of the design parameters were acquired by way of variance analysis. According to the test result, an optimum program to further design was put forward. After manufactured and tested, the efficiency and head of the final optimal design models were significantly improved. The productions show good energy saving and material saving characters and could replace traditional pumps for deep well in the future, the comprehensive technical indicators achieve international advanced levels. The results would be instructive to the design method of new-type deep well pump.
机译:在本文中,为了开发高效率和高头孔泵,用四个因子和三个值进行L9(34)正交实验,包括出口角,出口宽度,叶轮后凸罩的外径等.9设计了叶轮。新型两级深井泵的整个流场通过Fluent 6.2使用标准模型,简单的算法,二阶Upwind方案来模拟,并分析独立的数量网格。获得了9组设计方案的效率和头部。使用拉丁方测试方法研究了几何参数对效率的影响,头部进行了研究。通过方差分析获取设计参数的主要和次要因素。根据测试结果,提出了进一步设计的最佳计划。在制造和测试后,最终最佳设计模型的效率和头部显着提高。该产品展示了良好的节能和材料节能性格,可以取代传统泵在未来深度良好,综合技术指标实现国际先进水平。对新型深井泵的设计方法来说,结果是有效的。

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