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Numerical Assessment of Similitude Parameters and Dimensional Analysis for Water Entry Problems

机译:入水问题相似参数的数值评估和尺寸分析

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The prediction of impulsive loads deriving from the sudden impact of a solid body on the water surface is of fundamental importance for a wide range of engineering applications. The study of hull-slamming phenomena largely relies on laboratory scale experimental investigations and on simplified analytical models. The aim of this paper is to quantitatively assess the interplay between the relevant nondimensional parameters for the water entry of a two-dimensional body, evidencing the similitude conditions that allow the transition from scaled experiments to real size applications. This assessment is performed through the numerical study of the hydrodynamics induced by the water impact of a two-dimensional wedge. The fluid flow is considered incompressible. First of all numerical simulations are validated by comparison with experimental data from the literature and with the Wagner seminal theory. Afterwards, a thorough computational study is performed by systematically varying all the relevant parameters, such as the nondimensional entry velocity and acceleration. We conclude by evidencing some design prescriptions that should be adopted in order to facilitate the transition of laboratory scale experiments to real scale applications.
机译:对于固体在水表面上的突然冲击而产生的冲击载荷的预测,对于广泛的工程应用至关重要。船体撞击现象的研究在很大程度上取决于实验室规模的实验研究和简化的分析模型。本文的目的是定量评估二维物体入水的相关无量纲参数之间的相互作用,证明允许从比例实验过渡到实际应用的相似条件。该评估是通过对二维楔形物的水冲击引起的水动力的数值研究进行的。流体流动被认为是不可压缩的。首先,通过与文献中的实验数据以及Wagner精理论进行比较,验证了数值模拟的有效性。然后,通过系统地改变所有相关参数(例如无量纲入口速度和加速度)来进行彻底的计算研究。最后,我们通过列举一些设计规范来促进实验室规模实验向实际规模应用的过渡。

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