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Unsteady dynamics in double channel pump |
Tan Minggao1, Lian Yichao1, Wu Xianfang2, Ding Rong1, Chen Kun3 |
1.Research Center of Pumps, Jiangsu University, Zhenjiang, Jiangsu 212013, China; 2.School of Energy and Power Engineering, Jiangsu University, Zhenjiang 212013, China; 3. Ningbo Jushen Pumps Industry Co., Ltd., Ningbo, Zhejiang 315135, China |
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Abstract In order to research the unsteady dynamics in a double channel sewage pump as it transports the solid-liquid two-phase flow, the inner flow double channel sewage pump was numerically simulated by using the mixture multiphase flow model and the developed standard k-ε turbulence model. The pressure fluctuation in the gap flow channel and the impeller radial force under different impeller diameter D2, namely 101, 103 and 105 mm, were studied. The simulation results agree well with the experimental ones, which indicated that the numerical calculation methods can be used to predict the transient dynamics in this pump. The results showed that the dominant frequency of pressure pulsation at monitoring points in gap flow channel is the blade passing frequency before and after adding a moderate amount of particles. The pressure fluctuation intensity at each monitoring point was weakened with particle addition and the maximum reduction was 25.86%. When the pump transports the solid-liquid two-phase flow and the diameter is 105 mm or 101 mm, the distribution and change of impeller radial force are more regular under designed and operation at a small flow rate. When the flow rate of two-phase flow is larger than the design flow rate, the distribution and change of impeller radial force are regular under all diameters. As the flow rate of two-phase flow increases, the vector center of impeller radial force moves from the eighth section to the fourth section of volute and the impeller diameter has little effect on it.
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Received: 27 October 2016
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