格子Boltzmann方法
机械
消散
物理
解算器
不稳定性
涡度
雷诺数
非线性系统
夹带(生物音乐学)
经典力学
统计物理学
数学
湍流
涡流
数学优化
节奏
热力学
量子力学
声学
作者
E. Dinesh Kumar,S. A. Sannasiraj,V. Sundar
标识
DOI:10.1080/00221686.2024.2377144
摘要
In the present work, the conservative phase-field lattice Boltzmann model is applied to simulate plunging breakers in shallow waters. The solver is computationally efficient as it is explicit in time stepping and does not require a solution for the pressure Poisson equation. Nevertheless, the solver can simultaneously handle a large Reynolds number (=104) and a high-density ratio of 1000. Simulations are performed by varying initial steepness and dispersion parameters, which influence the nonlinearity degree of wave (or the growth speed of instability) and the oscillatory motion (limited by the bottom) on the breaking characteristics. Detailed analyses of kinematics, air entrainment, vorticity, and energy dissipation are presented.
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