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Toward Efficient Computation of Heat and Mass Transfer Effects in the Continuum Model for Bubbly Cavitating Flows

机译:气泡空化流连续模型中传热和传质效果的高效计算

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摘要

The Rayleigh-Plesset equation is used extensively to model spherical bubble dynamics, yet is has been shown that it cannot correctly capture damping effects due to mass and thermal diffusion. Full single bubble models have been successfully used to study these diffusion effects, but these are to computationally expensive to implement into the continuum model for bubbly cavitating flow since the diffusion equations must be solved in the radial direction at each position in the flow. The focus of the present research is the development of simpler and more efficient bubbly dynamic models that capture the important aspects of the diffusion processes. We present some preliminary results from a full bubbly model that has been developed to provide insight into possible simplifications. This in turn can be used to develop and validate simpler models. The full model is contrasted to the Rayleigh-Plesset equations, and a suggestion for possible improvement to the Rayleigh-Plesset equation is made.
机译:Rayleigh-Plesset方程已广泛用于建模球形气泡动力学,但已证明由于质量和热扩散,它无法正确捕获阻尼效应。完整的单气泡模型已经成功地用于研究这些扩散效应,但是由于必须在径向上求解流动中每个位置的扩散方程,因此将其实施到用于气泡空化流的连续模型中,在计算上花费很大。本研究的重点是开发更简单,更有效的气泡动力学模型,该模型捕获了扩散过程的重要方面。我们从已开发的完整气泡模型中提供一些初步结果,以提供对可能的简化方法的见识。反过来,这可以用于开发和验证更简单的模型。将完整模型与Rayleigh-Plesset方程进行对比,并提出了可能改进Rayleigh-Plesset方程的建议。

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