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Numerical and experimental study of cavitating flow through an axial inducer considering tip clearance

机译:考虑尖端间隙的空化流经轴向诱导器的数值和实验研究

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This paper presents three-dimensional numerical simulations and experimental investigations of cavitating flow through an axial inducer. Particularly, this work focuses on the influence of radial tip clearance on cavitation behavior. Numerical analysis was carried out on two different configurations: first, the inducer was modeled without taking tip clearance into consideration. Later, the inducer was modeled with nominal tip clearance and some modifications of this. It was found that radial tip clearance has a significant influence on the overall inducer performance in the non-cavitating regime because of the small size of the inducer. Moreover, the effects of radial tip clearance are strong in inducer cavitation behavior. Numerical results and experimental data with nominal tip clearance were compared in cavitating and non-cavitating regimes and these were discussed. The cavitation model used for calculation is based on a single-fluid multiphase flow method, assuming thermal equilibrium between phases. It is based on the classical conservation equations of the vapor phase and a mixture phase, with mass transfer due to cavitation appearing as a source and a sink term in the vapor mass fraction equation. Mass transfer rates are derived from the Rayleigh-Plesset model for bubble dynamics.
机译:本文介绍了空化流经轴向诱导器的三维数值模拟和实验研究。特别地,这项工作集中于径向尖端间隙对气蚀行为的影响。在两种不同的配置上进行了数值分析:首先,在不考虑尖端间隙的情况下对诱导器进行建模。后来,用名义上的尖端间隙及其一些修改对诱导器进行了建模。发现在非空化状态下径向尖端间隙对整体诱导器性能具有显着影响,因为诱导器尺寸小。此外,径向尖端间隙的影响在诱导剂空化行为方面很强。比较了空化和非空化状态下的数值结果和具有名义尖端间隙的实验数据,并进行了讨论。用于计算的空化模型基于单流体多相流动方法,并假设相之间存在热平衡。它基于气相和混合相的经典守恒方程,在气相质量分数方程中,由于空化而引起的质量转移在气相中显示为源项和下沉项。传质速率是从Rayleigh-Plesset模型得出的,用于气泡动力学。

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