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Impact and Spreading of a Particle-Laden Droplet on the Solid Substrate

机译:粒子升降液滴在固体基材上的影响和扩散

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We present a numerical simulation technique of the impact and spreading of a particulate droplet on the solid substrate. We consider the impact and spreading of a droplet that just after hits on a flat solid surface. Inertia is applied on an initially stationary droplet just for one time step for acceleration to achieve a certain initial velocity. We used the 2nd-order Adams-Bashforth/Crank-Nicholson method to solve the Navier-Stokes equation and employed the level-set method with the continuous surface stress for description of droplet spreading with interfacial tension. We focus in this work on 2D droplet problem on a solid surface. We investigated the droplet spreading by the inertial force and discussed effects of the presence of particles on the spreading behavior using an example problem. We present droplet spreading and recoiling on the solid surface. We report reduced oscillation and spread for the particulate droplet, compared with a droplet of pure fluid.
机译:我们介绍了固体基质上颗粒液滴的冲击和扩散的数值模拟技术。我们考虑液滴的冲击和传播,即在平坦的固体表面上击中。惯性应用于最初的静止液滴,仅用于加速以实现一定的初始速度。我们使用了2nd订购的Adams-Bashforth / Crank-Nicholson方法来解决Navier-Stokes方程,并采用具有连续表面应力的水平设定方法,用于用界面张力扩展的液滴描述。我们专注于实心表面上的2D液滴问题。我们研究了惯性力的液滴,并使用示例问题讨论了粒子存在对扩散行为的影响。我们呈现在固体表面上的液滴传播和重塑。与纯净流体的液滴相比,我们报告了降低的振荡和涂抹颗粒液滴。

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