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Water Entry of Cylindrical Shells: Theory and Experiments

机译:圆柱壳的入水:理论与实验

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摘要

Modeling hydroelastic response of lightweight structures to water impact plays a pivotal role in the design of lightweight marine vessels and crew capsules. In contrast to the majority of studies that focus on water entry of wedge-shaped bodies, this study addresses the hydroelastic impact of cylindrical shells. A cylindrical shape allows for a systematic study of the interplay between bending and stretching during water entry. This study puts forward a mathematically tractable framework to study the rigid body motion and elastic deformation of cylindrical shells, free falling onto a quiescent water surface. Donnel thin shell theory is used to model the shell, and Wagner theory is adopted to determine the hydrodynamic loading as a function of the rigid body motion and structural deformation. Galerkin method is employed to cast the problem into a manageable system of coupled ordinary differential equations, which are then solved numerically. Model predictions are validated against experiments on shells with two thicknesses, detailing both the flow physics and elastic response through the cogent integration of direct acceleration measurement, high-speed imaging, and particle image velocimetry. The proposed framework and experimental dataset are expected to constitute the foundations on which to formulate new theories for lightweight composites and testing computational schemes.
机译:轻型结构对水冲击的水弹性响应建模在轻型船舶和船员舱的设计中起着关键作用。与大多数侧重于楔形物体入水的研究相反,该研究解决了圆柱壳的水弹性影响。圆柱形状允许系统地研究入水期间弯曲和拉伸之间的相互作用。这项研究提出了一个数学上易处理的框架,以研究自由下落到静态水面上的圆柱壳的刚体运动和弹性变形。使用Donnel薄壳理论对壳进行建模,并采用Wagner理论确定流体动力载荷,该载荷是刚体运动和结构变形的函数。采用Galerkin方法将问题转化为可管理的耦合常微分方程组,然后对其进行数值求解。通过在两种厚度的壳体上进行的实验对模型预测进行了验证,通过直接加速度测量,高速成像和粒子图像测速的有效整合,详细说明了流动物理特性和弹性响应。所提出的框架和实验数据集有望构成为轻质复合材料制定新理论和测试计算方案的基础。

著录项

  • 来源
    《AIAA Journal》 |2018年第11期|4500-4514|共15页
  • 作者单位

    NYU, Tandon Sch Engn, Dept Mech & Aerosp Engn, MetroTech Ctr 6, Brooklyn, NY 11201 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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