Influence of Velocity Curves Unevenness on the Centrifugal Pump Head

V. A. Cheryomushkin, V. Lomakin
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Abstract

A formula of the theoretical head, which gives the value of the impeller in terms of its geometrical parameters, is used to calculate the pump head at the stage of theoretical design. One of the main assumptions in this case is a strip theory, which does not take into consideration the unevenness of curves of the meridional and circumferential velocity components at the impeller outlet of a centrifugal pump. The article studies this influence. Describes a mathematical model for theoretical and numerical calculations. Shows the figures of the flow part under study and of the computational grid. For complete formalization of the problem the meshing models and boundary conditions are shown. As the boundary conditions, full pump-inlet head into the flow part and velocity at the outlet were used. Then, there are the graphs to compare the results of theoretical and numerical calculation and the error is shown. For comparison, a value of the theoretical head was multiplied by the efficiency, which was defined by computer simulation. A designing process of the flow part was iterative, so the comparison was carried out for all iterations. It should be noted that correction for the finite number of blades is also assumption. To determine a degree of the errors impact because of this correction, an average value of the circumferential component of the fluid velocity at the impeller outlet was calculated by two above methods followed by their comparison. It was shown that this impact is negligible, i.e. correction provides a sufficiently accurate value. In conclusion, the paper explains the possible reasons for inaccuracies in theoretical determination of the head, as well as the option to eliminate this inaccuracy, thereby reducing the time required for defining the basic parameters of the flow part. To illustrate the nature of fluid flow, for the last iteration are given the fields of the pressure distribution and the velocity vector in the equatorial section of the flow. All calculations were performed for both capacity values of the dual-mode pump.
速度曲线不均匀对离心泵扬程的影响
在理论设计阶段,用理论扬程公式计算泵的扬程,该公式给出了叶轮的几何参数值。在这种情况下的主要假设之一是条理论,它没有考虑离心泵叶轮出口的子午和周向速度分量曲线的不均匀性。本文对这种影响进行了研究。描述用于理论和数值计算的数学模型。给出了所研究流动部分的图形和计算网格的图形。为了使问题完全形式化,给出了网格模型和边界条件。边界条件采用泵入口满水头进入流段和出口速度。然后,用图表比较了理论计算和数值计算的结果,并给出了误差。为了进行比较,将理论水头值乘以由计算机模拟定义的效率。流件的设计过程是迭代的,因此对所有迭代进行比较。需要注意的是,对于叶片数量有限的修正也是假设。为了确定这种修正对误差的影响程度,采用上述两种方法计算了叶轮出口流体速度周向分量的平均值,并进行了比较。结果表明,这种影响可以忽略不计,即校正提供了足够精确的值。综上所述,本文解释了水头理论确定不准确的可能原因,以及消除这种不准确性的选择,从而减少了确定流动部分基本参数所需的时间。为了说明流体流动的性质,在最后一次迭代中给出了流体赤道段的压力分布场和速度矢量场。所有的计算都是针对双模泵的两个容量值进行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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