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Modeling nucleation phenomena in cavitating flow

机译:在空化流动中建模成核现象

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The aim of this investigation is to implement a cavitating flow model taking into account the nucleation for both water and cryogenic fluids, in particular hydrogen. In this paper we re-examine previously developed cavitation models, used for water liquid, including thermal effect for simulations of cryogenic fluids and transport equation for the bubble number. Thermal effects substantially impact the cavitation dynamics of cryogenic fluids. Different numerical cavitation models, based on different physics of mass exchange between liquid and vapor phases, and taking into account the nucleation, were used to simulate the flowfield in internal flow. The transport equation for bubble number is solved in conjunction with the mass and momentum conservation. Performances of the reported cavitation models are tested, comparing the predicted pressure with the experimental data, with non-cryogenic and cryogenic fluids. For non-cryogenic the phase change during rapid depressurization of water have been studied and the role of vapor bubbles nucleation and growth and the effect on the system fluid dynamics were modeled. For cryogenic fluid the cavitation phenomena of liquid hydrogen flowing in a Venturi has been investigated and the results have been compared with experimental data.
机译:本研究的目的是实施一种空化流模型,考虑到水和低温流体,特别是氢气的成核。在本文中,我们重新检查了用于水液的先前开发的空化模型,包括用于模拟的气泡液和泡沫数的传输方程的热效果。热效应基本上影响低温流体的空化动力学。基于液体和蒸汽阶段的配方物理的不同物理学,并考虑到核切割,以模拟内部流动的不同数值空化模型。泡沫数量的传输方程与质量和动量保守解决。测试报告的空化模型的性能,将预测的压力与实验数据进行比较,具有非低温和低温流体。对于非低温的,已经研究了水快速减压期间的相变,模拟了蒸气泡沫成核和生长的作用以及对系统流体动力学的影响。对于低温流体,研究了文丘里液中流动的空化现象,并将结果与​​实验数据进行了比较。

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