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CFD for centrifugal pumps: a review of the state-of-the-art

机译:离心泵的CFD:对最先进的综述

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The flow analysis inside the centrifugal pump is highly complex mainly due to 3D flow structure involving turbulence, secondary flow, cavitation and unsteadiness. In recent years, a growing availability of computational resources and progress in the accuracy of numerical methods brought turbo machinery Computational Fluid Dynamics (CFD) methods from pure research work into the competitive industrial markets. The critical review of CFD analysis of centrifugal pumps along with the future scopes for further improvement is presented in this paper. CFD technique has been applied by the researchers to carry out different investigations on centrifugal pumps viz. performance prediction at design and off-design conditions, parametric study, cavitation analysis, diffuser pump analysis, performance of pump running in turbine mode etc. Unsteady Reynolds-averaged Navier-Stokes equations together with two equation k-£ turbulence model were found to be appropriate for CFD analysis of centrifugal pump. Volute flow study and impeller-volute interaction appeared as an interesting research fields for the further improvement in the pump performance. The most active areas of research and development are the analysis of two phase flow, pump handling non-Newtonian fluids and fluid-structure interaction.
机译:离心泵内的流动分析主要复杂,主要是由于涉及湍流,二次流动,空化和不稳定性的3D流动结构。近年来,数值方法的准确性越来越多的计算资源和进展,从纯研究工作到竞争力的工业市场,带来了涡轮机械计算流体动力学(CFD)方法。本文介绍了离心泵对离心泵CFD分析的批判性评价。本文介绍了未来范围。研究人员已经应用了CFD技术,对离心泵Qiz进行了不同的调查。设计和非设计条件下的性能预测,参数研究,空化分析,扩散器泵分析,泵运行的泵的性能等。发现,不稳定的雷诺平均水平与两个等式K-Infulence模型一起进行了平均的Navier-Stokes方程适用于离心泵的CFD分析。蜗壳流动研究和叶轮速度相互作用出现为有趣的研究领域,以进一步提高泵性能。最活跃的研发领域是分析两相流,泵处理非牛顿流体和流体结构相互作用。

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