首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy >Numerical analysis of unsteady cavitating flow in an axial inducer
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Numerical analysis of unsteady cavitating flow in an axial inducer

机译:轴向诱导器中非定常空化流的数值分析

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This article presents a numerical simulation of an unsteady cavitating flow. First, the analysis was carried out for a two-dimensional (2D) venturi-type geometry, and then for a 2D blade cascade simulating an axial inducer. The main purpose of this work is to explore the local cavitation instabilities, such as alternate blade cavitation and rotating blade cavitation, which can appear in axial inducers. The numerical simulation was performed using a commercial code based on a cell-centred finite-volume method. The cavitation model used for calculations assumes a thermal equilibrium between phases. It is based on the classical conservation equations of the vapour phase and the mixture phase, with mass transfer owing to the cavitation appearing as a source and a sink term in the vapour mass fraction equation. The mass transfer rate is derived from a simplified Rayleigh–Plesset model for bubble dynamics.
机译:本文介绍了非定常空化流的数值模拟。首先,对二维(2D)文丘里型几何形状进行分析,然后对模拟轴向诱导器的2D叶片叶栅进行分析。这项工作的主要目的是探索局部气蚀不稳定性,例如交替叶片气蚀和旋转叶片气蚀,它们可能会出现在轴向诱导器中。使用基于单元为中心的有限体积方法的商业代码执行数值模拟。用于计算的气穴模型假设相之间为热平衡。它基于气相和混合相的经典守恒方程式,在气相质量分数方程中,由于空化作用而引起的质量转移在气相质量分数方程中作为源和下沉项出现。传质速率来自气泡动力学的简化Rayleigh-Plesset模型。

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