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Simulation of a Liquid Droplet Impinging on a Horizontal Solid Substrate Using Lattice Boltzmann Moment Model

机译:格子Boltzmann矩模型模拟液滴撞击水平固体衬底

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摘要

The shape and surface texture of a liquid droplet were studied in two-dimension when a droplet impinges on a solid substrate under isothermal condition. The lattice Boltzmann moment model was applied to simulate the fluid dynamics considering the adhesive interaction between fluid particles and surfaces. The results show the influence of wetting on the process and the drop shape. For the hydrophobic surface, the process after impinging may be divided into two stages: the spreading process driven by inertial forces and the subsequent oscillation (recoiling process) driven by surface tension forces. While for the hydrophilic surface, the droplet will only deposits on the surface and there is no the recoiling stage. In addition, the effects of the impinging speed on the shape and texture of the droplet were studied. The spreading speed and the maximum diameter of the spreading droplet increase with the rise of the impinging speed.
机译:当液滴在等温条件下撞击固体基质时,以二维方式研究液滴的形状和表面纹理。考虑流体颗粒与表面之间的胶粘剂相互作用,应用了格子Boltzmann矩模型来模拟流体动力学。结果表明润湿对过程和液滴形状的影响。对于疏水表面,撞击后的过程可以分为两个阶段:由惯性力驱动的扩散过程和由表面张力驱动的后续振动(回卷过程)。而对于亲水性表面,液滴只会沉积在表面上,没有回卷阶段。此外,研究了撞击速度对液滴形状和质地的影响。随着撞击速度的增加,扩散速度和扩散液滴的最大直径增加。

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