论文标题
球体连续水进入撞击力量
Impact force reduction by consecutive water entry of spheres
论文作者
论文摘要
影响水池上的自由坠落的物体经历了很高的初始冲击力,当时在突破自由表面的那一刻。许多人直观地想知道,在影响水面之前,将另一个物体扔在重要物体(像自己一样)的面前是否会减少这种高影响力。在这里,我们通过允许两个球体连续进入水并测量后线球上的力来测试这个想法。我们发现,尾部球的冲击加速度降低取决于第一球体产生的腔的动力学以及第二球的相对时机。这些综合效应由非二维“ Matryoshka”数量捕获,该数字将观察到的现象分为四个主要政权。在其中三个方案中,我们发现第二球的冲击加速度相对于静态水面的影响,最多将高达78%\%降低。令人惊讶的是,在其中一个政权中,在最坏的情况下,尾部球上的力量显着增加了400 \%。我们解释了腔体演变的各个阶段如何导致在这个多体水进入问题中观察到的影响力的改变。
Free-falling objects impacting onto water pools experience a very high initial impact force, greatest at the moment when breaking through the free surface. Many have intuitively wondered whether throwing another object in front of an important object (like oneself) before impacting the water surface may reduce this high impact force. Here, we test this idea experimentally by allowing two spheres to consecutively enter the water and measuring the forces on the trailing sphere. We find that the impact acceleration reduction on the trailing sphere depends on the dynamics of the cavity created by the first sphere and the relative timing of the second sphere impact. These combined effects are captured by the non-dimensional `Matryoshka' number, which classifies the observed phenomena into four major regimes. In three of these regimes, we find that the impact acceleration on the second sphere is reduced by up to 78\% relative to impact on a quiescent water surface. Surprisingly, in one of the regimes, the force on the trailing sphere is dramatically increased by more than 400\% in the worst case observed. We explain how the various stages of cavity evolution result in the observed alterations in impact force in this multi-body water entry problem.