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首页> 外文期刊>Journal of Fluid Mechanics >Unsteady forces on spheres during free-surface water entry
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Unsteady forces on spheres during free-surface water entry

机译:自由表面水进入期间球体上的不稳定力

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We present a study of the forces during free-surface water entry of spheres of varying masses, diameters, and surface treatments. Previous studies have shown that the formation of a subsurface air cavity by a falling sphere is conditional upon impact speed and surface treatment. This study focuses on the forces experienced by the sphere in both cavity-forming and non-cavity-forming cases. Unsteady force estimates require accurate determination of the deceleration for both high and low mass ratios, especially as inertial and hydrodynamic effects approach equality. Using high-speed imaging, high-speed particle image velocimetry, and numerical simulation, we examine the nature of the forces in each case. The effect of mass ratio is shown, where a lighter sphere undergoes larger decelerations and more dramatic trajectory changes. In the non-cavity-forming cases, the forces are modulated by the growth and shedding of a strong, ring-like vortex structure. In the cavity-forming cases, little vorticity is shed by the sphere, and the forces are modulated by the unsteady pressure required for the opening and closing of the air cavity. A data-driven boundary-element-type method is developed to accurately describe the unsteady forces using cavity shape data from experiments.
机译:我们对质量,直径和表面处理不同的球体的自由表面水进入过程中的力进行了研究。先前的研究表明,落球形成地下空气腔的条件是冲击速度和表面处理。这项研究的重点是球体在形成腔和不形成腔的情况下所经历的力。非恒定力的估计需要精确确定高质量比和低质量比时的减速度,尤其是在惯性和流体动力效应趋于相等时。使用高速成像,高速粒子图像测速和数值模拟,我们研究了每种情况下力的性质。示出了质量比的影响,其中较轻的球体经历较大的减速度和更剧烈的轨迹变化。在非空穴形成的情况下,力由坚固的环形涡旋结构的生长和脱落来调节。在形成腔的情况下,球体很少产生涡流,并且通过打开和关闭空气腔所需的非恒定压力来调节力。开发了一种数据驱动的边界元类型方法,以利用实验中的空腔形状数据准确地描述非定常力。

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