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首页> 外文期刊>International journal of numerical methods for heat & fluid flow >Numerical simulation of vapor bubble growth on a vertical superheated wall using lattice Boltzmann method
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Numerical simulation of vapor bubble growth on a vertical superheated wall using lattice Boltzmann method

机译:垂直过热壁上气泡生长的格子Boltzmann方法数值模拟

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摘要

Purpose - The purpose of this paper is to test the feasibility of lattice Boltzmann method (LBM) for numerical simulation of nucleate boiling and transition boiling. In addition, the processes of nucleate and transition boiling on vertical wall are simulated. The heat transfer mechanism is discussed based on the evolution of temperature field. Design/methodology/approach - In this paper, nucleate boiling and transition boiling are numerically investigated by LBM. A lattice Boltzmann (LB) multiphase model combining with a LB thermal model is used to predict the phase-change process. Findings - Numerical results are in good agreement with existing experimental results. Numerical results confirm the feasibility of the hybrid LBM for direct simulations of nucleate and transition boiling. The data exhibit correct parametric dependencies of bubble departure diameter compared with experimental correlation and relevant references. Research limitations/implications - All the simulations are performed in two-dimensions in this paper. In the future work, the boiling process will be simulated in three-dimensional. Practical implications - This study demonstrated a potential model that can be applied to the investigation of phase change heat transfer, which is one of the effective techniques for enhance the heat transfer in engineering. The numerical results can be considered as a basic work or a reference for generalizing LB method in the practical application about nucleate boiling and transition boiling. Originality/value - The hybrid LBM is first used for simulation of nucleate and transition boiling on vertical surface. Heat transfer mechanism during boiling is discussed based on the numerical results.
机译:目的-本文的目的是测试晶格玻尔兹曼方法(LBM)进行核沸腾和过渡沸腾数值模拟的可行性。另外,模拟了垂直壁上的成核和过渡沸腾过程。基于温度场的演化讨论了传热机理。设计/方法/方法-在本文中,LBM对核沸腾和过渡沸腾进行了数值研究。结合LB热模型的格子Boltzmann(LB)多相模型可用于预测相变过程。发现-数值结果与现有实验结果非常吻合。数值结果证实了混合LBM用于直接模拟核和过渡沸腾的可行性。与实验相关性和相关参考相比,该数据显示出气泡离开直径的正确参数依赖性。研究局限性/意义-本文所有的仿真都是二维进行的。在未来的工作中,沸腾过程将在三维中进行模拟。实际意义-这项研究表明了一种可用于研究相变传热的潜在模型,这是增强工程中传热的有效技术之一。数值结果可作为核沸腾和过渡沸腾在实际应用中推广LB法的基础工作或参考。原创性/价值-混合LBM首先用于模拟垂直表面上的成核和过渡沸腾。根据数值结果讨论了沸腾过程中的传热机理。

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