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Impact Loading on Marine Panels: Modeling the Effect of Water Backing

机译:在海洋面板上的冲击载荷:建模水背衬的效果

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The design of naval, aeronautical, and offshore structures considerably relies on fluid-structure interaction models than can accurately predict dynamic response. Here, we propose a modeling framework to elucidate the role of water-backing on the impact response of marine panels. The panel dynamics is described using nonlinear Euler-Bemoulli beam theory incorporating von Karman nonlinearity. Potential flow theory is used to model the fluid flow, and a closed-form solution is established for the hydrodynamic pressure as a function of the panel acceleration. Galerkin discretization method is implemented to cast the problem into a set of nonlinear ordinary differential equations, which are solved using polynomial set of basis functions. We specialize results to vinyl ester resins panels and a parametric study is conducted to investigate the role of panel thickness.
机译:海军,航空和海上结构的设计显着依赖于流体结构相互作用模型,而不是准确地预测动态响应。在这里,我们提出了一种建模框架,以阐明水支持对海洋面板的影响响应的作用。使用包含von Karman非线性的非线性Euler-Bemouli光束理论来描述面板动力学。潜在的流动理论用于模拟流体流动,并根据面板加速度为流体动力学压力建立闭合溶液。实现了Galerkin离散化方法以将问题施放到一组非线性常微分方程中,这些非线性常微分方程是使用多项式基团函数求解的。我们将结果专用于乙烯基酯树脂面板,并进行参数研究以研究面板厚度的作用。

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