喷出物
机械
斜格
地质学
航程(航空)
上游(联网)
动力学(音乐)
物理
边界层
不变(物理)
铅(地质)
计算机模拟
数值模型
射弹
边界(拓扑)
深水
强迫(数学)
毛细管作用
撞击坑
材料科学
几何学
支柱
作者
Thomas C. Sykes,Luke F. L. Alventosa,J. R. Castrejón-Pita,Radu Cimpeanu,Daniel M. Harris,Alfonso A. Castrejón‐Pita
标识
DOI:10.1017/jfm.2026.11586
摘要
When a fast droplet impacts a pool, the resulting ejecta sheet dynamics determine the final impact outcome. At low capillary numbers, the ejecta sheet remains separate from a deep static pool, while at higher values, it develops into a lamella. Here, we show that the common natural scenario of a slowly moving deep pool can change the upstream impact outcome, creating highly three-dimensional dynamics no longer characterised by a single descriptor. By considering how pool movement constrains the evolution of the ejecta sheet angle, we reach a length-scale invariant parametrisation for the upstream transition that holds for a wide range of fluids and impact conditions. Direct numerical simulations show similar dynamics for an equivalent oblique impact, indicating that the air boundary layer above a moving pool does not play a decisive role for low pool–droplet speed ratios. Our results also provide insight into the physical mechanisms that underpin pool impact outcomes more generally.
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