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Phase-field lattice Boltzmann modeling of boiling using a sharp-interface energy solver

机译:使用尖锐界面能量求解器沸腾的相位场晶格Boltzmann建模

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摘要

Themain objective of this paper is to extend an isothermal incompressible two-phase latticeBoltzmann equation method to model liquid-vapor phase change problems using a sharp-interface energy solver. Two discrete particle distribution functions, one for the continuity equation and the other for the pressure evolution and momentum equations, are considered in the current model. The sharp-interface macroscopic internal energy equation is discretized with an isotropic finite difference method to find temperature distribution in the system. The mass flow generated at liquid-vapor phase interface is embedded in the pressure evolution equation. The sharp-interface treatment of internal energy equation helps to find the interfacial mass flow rate accurately where no free parameter is needed in the calculations. The proposed model is verified against available theoretical solutions of the two-phase Stefan problem and the two-phase sucking interface problem, with which our simulation results are in good agreement. The liquid droplet evaporation in a superheated vapor, the vapor bubble growth in a superheated liquid, and the vapor bubble rising in a superheated liquid are analyzed and underlying physical characteristics are discussed in detail. The model is successfully tested for the liquid-vapor phase change with large density ratio up to 1000.
机译:本文的主题目的是使用尖锐界面能量求解器扩展一个等温不可压缩的两相样片螺栓杆子公式方法,以模拟液体蒸汽相变问题。在当前模型中考虑了两个用于连续性方程的离散粒度分布函数,另一个用于压力演化和动量方程。锐利接口宏观内部能量方程与各向同性的有限差分方法离散化,以在系统中找到温度分布。在液 - 气相界面处产生的质量流量嵌入压力进化方程中。内部能量方程的尖锐界面处理有助于精确地找到界面质量流量,而计算中不需要免费参数。拟议的模型是针对两阶段Stefan问题的可用理论解决方案和两相吸吮界面问题的验证,我们的模拟结果与良好一致。在过热的蒸汽中蒸发液体液滴,在过热的液体中的蒸气气泡生长和超热液体中上升的蒸气气泡进行分析,并详细讨论了物理特性。该模型成功地测试了液体气相变化,密度比高达1000。

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