Fully Transient CFD Analysis of Waterjet Pumps

N. Bulten, V. Esch
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引用次数: 12

Abstract

This paper presents results of fully transient calculations of the flow-through waterjet pumps. The fully transient method is based on a moving mesh option to implement the rotation of the impeller. In this way, the time-dependent forces, acting on the impeller, can be determined. These forces can be divided into axial and radial forces, e.g. as a result of rotor-stator interaction. In waterjet applications, the non-uniform inflow velocity distribution creates additional steady transverse impeller force in the stationary frame (in the horizontal and vertical direction). CFD analyses are made of two Lips-Jets waterjet pumps equipped with 3 and 6 bladed impellers to investigate the rotor-stator interaction force for various flow rates. Calculations with a non-uniform inflow velocity distribution are made to determine the steady transverse forces. The strength of this steady force depends on the amplitude of the velocity variations and the flow rate through the pump.
水泵全瞬态CFD分析
本文介绍了射流泵的全瞬态计算结果。全瞬态方法是基于移动网格选项来实现叶轮的旋转。这样,就可以确定作用在叶轮上的随时间变化的力。这些力可以分为轴向力和径向力,例如,由于转子-定子相互作用。在水射流应用中,不均匀的入流速度分布在固定框架中(在水平和垂直方向上)产生了额外的稳定横向叶轮力。采用CFD方法对2台3叶和6叶叶片的lip - jets水泵进行了不同流量下的动静力分析。采用非均匀入流速度分布进行计算,以确定稳定横向力。这种稳定力的强度取决于速度变化的幅度和通过泵的流量。
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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