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Numerical Evaluation of Dynamic Response for Flexible Composite Structures under Slamming Impact for Naval Applications

机译:柔性复合结构动力响应的数值评价对海军应用下撞击影响

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摘要

The deformable composite structures subjected to water-entry impact can be caused a phenomenon called hydroelastic effect, which can modified the fluid flow and estimated hydrodynamic loads comparing with rigid body. This is considered very important for ship design engineers to predict the global and the local hydrodynamic loads. This paper presents a numerical model to simulate the slamming water impact of flexible composite panels using an explicit finite element method. In order to better describe the hydroelastic influence and mechanical properties, composite materials panels with different stiffness and under different impact velocities with deadrise angle of 10(0) have been studied. In the other hand, the inertia effect was observed in the early stage of the impact that relative to the loading rate. Simulation results have been indicated that the lower stiffness panel has a higher hydroelastic effect and becomes more important when decreasing of the deadrise angle and increasing the impact velocity. Finally, the simulation results were compared with the experimental data and the analytical approaches of the rigid body to describe the behavior of the hydroelastic influence.
机译:经受水入口冲击的可变形复合结构可以引起称为液压弹性效应的现象,可以修改与刚体相比的流体流动和估计的流体动力载荷。这对于船舶设计工程师来说绝对是非常重要的,以预测全局和局部流体动力载荷。本文介绍了使用明确的有限元法模拟柔性复合板的砰泥水冲击的数值模型。为了更好地描述液体弹性影响和机械性能,已经研究了具有不同刚度和不同冲击速度的复合材料板,已经进行了10(0)的死亡角度。另一方面,在相对于加载速率的影响的早期阶段观察到惯性效应。已经表明,仿真结果表明,下刚度面板具有更高的水力弹性效果,并且在降低失去角度并增加冲击速度时变得更加重要。最后,将仿真结果与刚体的实验数据和分析方法进行了比较,以描述液压弹性影响的行为。

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