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Numerical investigation on the transient characteristics of sediment-laden two-phase flow in a centrifugal pump

机译:离心泵沉积物沉积物两相流瞬态特性的数值研究

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摘要

The objective of this work was to determine pressure fluctuation and transient flow characteristics, which aims to provide references to improve noise and vibration performance for the pump design and optimization when delivering sediment-laden flow. The three-dimensional (3D) transient simulations were simulated by SST k-omega turbulence model combined with Homogeneous equilibrium model (HEM). The experimental and numerical data was compared to validate the numerical accuracy. The simulation results predicted that the concentration shows strong effects on the external performance, velocity, pressure, turbulent kinetic energy distribution and peak amplitude of pulsation frequency, which all perform increasing trend with the rise of concentration. Meanwhile, the effect of the diameter size of particles on the flow field was relatively minor, which can also evidently influence the internal flow, but the effect is not simply proportional to the diameter size. The effect of diameter size on silt flow needs to be taken into account associated with the concentration distribution. The dominant frequency of solid-liquid approximately equals 0.8 times that of pure water, and the transient characteristics of sediment-laden flow perform low frequency with high amplitude features.
机译:这项工作的目的是确定压力波动和瞬态流动特性,旨在提供提及提高泵设计和优化在提供沉积物流动时的噪​​声和振动性能。 SST K-Omega湍流模型与均匀平衡模型(下摆)结合模拟了三维(3D)瞬态模拟。比较实验和数值数据以验证数值准确性。仿真结果预测,浓度对外部性能,速度,压力,湍流动能分布和脉动频率的峰值幅度的浓度产生了强烈影响,脉动频率随着浓度的升高而越来越多的趋势。同时,颗粒直径尺寸对流场上的效果相对较小,这也可以显然地影响内部流动,但效果不与直径尺寸成比例。直径尺寸对淤泥流量的影响需要考虑与浓度分布相关的考虑。固体液体的主要频率近似等于纯净水的0.8倍,沉积物的瞬态特性具有高振幅特征的低频。

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