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Numerical simulation of droplet detachment from solid walls under gravity force using lattice Boltzmann method

机译:格子Boltzmann方法对重力作用下固体壁液滴飞离的数值模拟

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In this study, interparticle potential model (Shan and Chen) of lattice Boltzmann method is employed to simulate the dripping and detachment of immiscible droplet under gravity force. In order to validate the simulations, free deformation of initialized square drop, coalescence of two adjacent drops and the Laplace law of two dimensional drops have been investigated. Dynamic behaviors of droplet, i.e. droplet detachment from ceiling of channel and droplet detachment from left solid wall of channel with different conditions of wall wetting properties are oinvestigated. Simulation results are presented for different Eotvos numbers (3 <= Eo <= 48) at the small Ohnesorge number (Oh = 0.07), as well. The results show that the droplet will not detach from wettable wall in low Eotvos numbers (Eo 6), but in hydrophobic walls, the droplet detaches from the wall in total range of examined Eotvos number. (c) 2015 Elsevier B.V. All rights reserved.
机译:在这项研究中,采用格子Boltzmann方法的粒子间势模型(Shan和Chen)来模拟不混溶液滴在重力作用下的滴落和脱离。为了验证仿真,已经研究了初始化的正方形液滴的自由变形,两个相邻液滴的合并以及二维液滴的拉普拉斯定律。研究了液滴的动态行为,即在不同的壁润湿性条件下,液滴从通道顶部脱离和通道左侧固体壁脱离。还以较小的Ohnesorge数(Oh = 0.07)给出了不同Eotvos数(3 <= Eo <= 48)的仿真结果。结果表明,在低Eotvos数(Eo 6)下,液滴不会从可湿性壁上脱离,但在疏水性壁中,在所检查的Eotvos数的总范围内,液滴将从壁上脱离。 (c)2015 Elsevier B.V.保留所有权利。

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