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Numerical and experimental investigation of tank-type axial-flow pump device:

机译:罐式轴流泵装置的数值和实验研究:

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By means of numerical simulation and experimental verification, this article investigates the hydraulic performance and pressure fluctuation of a tank-style axial-flow pump device. With orthogonal test, 16 schemes are designed concerning the different flow conditions of the inlet and outlet passages, and simulated calculations are done; then the non-steady numerical simulation of pressure fluctuation is carried out for the optimized pump device; a model test finally verifies the reliability of the simulated numerical values of the optimized scheme. The results show that using the orthogonal test, an optimized scheme of the inlet and outlet passages can be obtained; compared with the initial scheme, the optimized one reduces the hydraulic loss by 1.3?cm in the inlet passage and 7.96?cm in the outlet passage; numerical simulation witnesses the highest pump operating efficiency of 70.04%, efficiency of 66.82% with the design head of 1.36?m, and the corresponding flow of 34.31?m3/s; the model test verifies al...
机译:通过数值模拟和实验验证,本文研究了罐式轴流泵装置的水力性能和压力波动。通过正交试验,针对进口和出口通道的不同流动条件设计了16种方案,并进行了模拟计算。然后对优化后的泵装置进行压力波动的非稳态数值模拟。最后通过模型测试验证了优化方案模拟数值的可靠性。结果表明,采用正交试验,可以得到进气道和出气道的优化方案。与初始方案相比,优化方案使入口通道的水力损失减少了1.3?cm,出口通道的水力损失减少了7.96?cm。数值模拟表明,泵的最高工作效率为70.04%,效率为66.82%,设计扬程为1.36?m,相应流量为34.31?m3 / s。模型测试可验证...

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