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A new cavitation model considering inter-bubble action

机译:考虑泡泡间动作的新空化模型

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The process of cavitation involves generation, growth, coalescence, and collapse of small bubbles and is tremendously influenced by bubble–bubble interactions. To understand these interactions, a new cavitation model based on the transport equation is proposed herein. The modified Rayleigh–Plesset equation is analyzed to determine the bubble growth rate by assuming equal-sized spherical bubble clouds. The source term in the transport equation is then derived according to the bubble growth rate with the bubble-bubble interaction. The proposed model is validated by various test simulations, including microscopic bubble cloud evolution as well as macroscopical two- and three-dimensional cavitating flows. Compared with previous models, namely the Kunz and Zwart cavitation models, the newly proposed model does not require adjustable parameters and generally results in better predictions both microscopic and macroscopical cases. This model is more physical.
机译:空化的过程涉及小气泡的产生,生长,聚结和塌陷,并且受到泡泡间相互作用的巨大影响。 为了了解这些相互作用,本文提出了一种基于传输方程的新空化模型。 通过假设相等大小的球形气泡云,分析改进的Rayleigh-Plesset方程以确定气泡生长速率。 然后根据气泡气泡相互作用根据气泡生长速率来衍生传输方程中的源极限。 所提出的模型通过各种测试模拟验证,包括微观气泡云进化以及宏观的两维空腔流动。 与以前的模型相比,即Kunz和Zwart空化模型,新提出的模型不需要可调参数,并且通常导致更好的预测显微镜和宏观病例。 这个模型更具物理。

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