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Drop dynamics after impact on a solid wall: Theory and simulations

机译:撞击实心墙后的下落动力学:理论和模拟

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We study the impact of a fluid drop onto a planar solid surface at high speed so that at impact, kinetic energy dominates over surface energy and inertia dominates over viscous effects. As the drop spreads, it deforms into a thin film, whose thickness is limited by the growth of a viscous boundary layer near the solid wall. Owing to surface tension, the edge of the film retracts relative to the flow in the film and fluid collects into a toroidal rim bounding the film. Using mass and momentum conservation, we construct a model for the radius of the deposit as a function of time. At each stage, we perform detailed comparisons between theory and numerical simulations of the Navier-Stokes equation.
机译:我们研究了液滴在高速作用下对平面固体表面的影响,因此在冲击时,动能在表面能中占主导地位,而惯性在粘滞效应中占主导地位。随着液滴的扩散,它变形为薄膜,其厚度受到固体壁附近粘性边界层的生长的限制。由于表面张力,膜的边缘相对于膜中的流动收缩,并且流体聚集到界定膜的环形边缘中。利用质量和动量守恒,我们建立了随时间变化的矿床半径模型。在每个阶段,我们都会对Navier-Stokes方程的理论和数值模拟进行详细的比较。

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