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Numerical Flow Prediction in Inlet Pipe of Vertical Inline Pump

机译:垂直内联泵入口管数值流动预测

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For a pump, the inlet condition of flow determines the outlet conditions of fluid (i.e., energy). As a rule to minimize the losses at the entry of pump, the bends should be avoided as one of the methods. But for the case of vertical inline pump, it is unavoidable in order to save the space for installation. For the purpose of investigation in inlet pipe of vertical inline pump, the unsteady Reynolds-averaged Navier-Stokes equations are solved using the computational fluid dynamics (CFD) code. The results have been shown that there is a good agreement between the performance characteristics obtained from the simulation and experiments. The velocity coefficient from the simulation along the inlet pipe sections is well matched with the theoretical values and found to have variation near the exit of inlet pipe. The pressure and velocity coefficients studies depict the flow physics at each section along with the study of helicity at the exit of inlet pipe to determine the recirculation effects. It is observed that the vortices associated with the motion of the particles are moved toward the surfaces and are more intense than the mean flow. The trends of pressure coefficient at the exit of inlet pipe were addressed with reference to the various flow rates for eight set of radial lines. Hence, this work concludes that for inlet pipe, the generation of circulation was due to the stream path and the reverse flow from the impeller and was reconfirmed with the literature.
机译:对于泵,流的入口状况决定了流体(即能量)的出口条件。通常,为了最大限度地减少泵入口处的损失,应避免弯曲作为其中一种方法。但对于垂直内联泵的情况,它是不可避免的,以节省安装空间。出于垂直内联泵入口管道的调查,使用计算流体动力学(CFD)代码来解决不稳定的雷诺平均南部的Navier-Stokes方程。结果表明,从模拟和实验获得的性能特征之间存在良好的一致性。沿着入口管部分的模拟的速度系数与理论值很好地匹配,并且发现在入口管的出口附近具有变化。压力和速度系数研究描绘了每个部分的流量物理,以及入口管道出口处的螺旋的研究,以确定再循环效果。观察到与颗粒的运动相关的涡流被朝向表面移动并且比平均流量更强烈。参考8组径向线的各种流速来解决入口管出口处的压力系数的趋势。因此,这项工作得出结论,对于入口管,循环的产生是由于流路径和来自叶轮的反向流动,并与文献重新确认。

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