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角输运迎风格子玻尔兹曼模型用于模拟空泡空化。

Corner-transport-upwind lattice Boltzmann model for bubble cavitation.

机构信息

Center for Fundamental and Advanced Technical Research, Romanian Academy, Bd. Mihai Viteazul 24, 300223 Timişoara, Romania.

Department of Physics, West University of Timişoara, Bd. Vasile Pârvan 4, 300223 Timişoara, Romania.

出版信息

Phys Rev E. 2018 Feb;97(2-1):023309. doi: 10.1103/PhysRevE.97.023309.

Abstract

Aiming to study the bubble cavitation problem in quiescent and sheared liquids, a third-order isothermal lattice Boltzmann model that describes a two-dimensional (2D) fluid obeying the van der Waals equation of state, is introduced. The evolution equations for the distribution functions in this off-lattice model with 16 velocities are solved using the corner-transport-upwind (CTU) numerical scheme on large square lattices (up to 6144×6144 nodes). The numerical viscosity and the regularization of the model are discussed for first- and second-order CTU schemes finding that the latter choice allows to obtain a very accurate phase diagram of a nonideal fluid. In a quiescent liquid, the present model allows us to recover the solution of the 2D Rayleigh-Plesset equation for a growing vapor bubble. In a sheared liquid, we investigated the evolution of the total bubble area, the bubble deformation, and the bubble tilt angle, for various values of the shear rate. A linear relation between the dimensionless deformation coefficient D and the capillary number Ca is found at small Ca but with a different factor than in equilibrium liquids. A nonlinear regime is observed for Ca≳0.2.

摘要

为了研究静止和剪切液体中的气泡空化问题,引入了一个三阶等温格子玻尔兹曼模型,该模型描述了服从范德瓦尔斯状态方程的二维(2D)流体。通过在大正方形格子(最大可达 6144×6144 个节点)上使用角输运迎风(CTU)数值方案来求解这个非格子模型的分布函数的演化方程。对于一阶和二阶 CTU 方案,讨论了模型的数值粘性和正则化,发现后者的选择可以得到非常精确的非理想流体相图。在静止液体中,本模型允许我们恢复二维瑞利-普莱塞特方程对于生长蒸汽泡的解。在剪切液体中,我们研究了各种剪切率下总气泡面积、气泡变形和气泡倾斜角的演化。在小 Ca 时,发现无量纲变形系数 D 与毛细数 Ca 之间存在线性关系,但与平衡液体中的因子不同。对于 Ca≳0.2,观察到非线性状态。

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