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Investigation of Progressive Structural Failure due to Soft Body Impact Using Meshless Lagrangian and Coupled Lagrangian-Eulerian Schemes

机译:基于无网格拉格朗日和耦合拉格朗日-欧拉方案的软体碰撞导致的渐进式结构破坏研究

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In this paper, a comparative study has been performed between the Meshless Lagrangian and Coupled Lagrangian-Eulerian schemes, to evaluate their overall efficiency and effectiveness for analyzing fluid-structure interactive systems. Soft body impact events onto composite laminates representing primary and secondary aircraft structures have been studied. Several cases with different bird velocities have been simulated to observe the non-linier behavior of soft body impact, along with the shortcomings of the modeling methodologies applied. The Meshless Lagrangian model produced a higher initial peak force, whereas the Coupled Lagrangian-Eulerian approach captured the impact window more smoothly with less obvious spikes. These schemes have also been compared with the conventional Lagrangian approach, which proved to be less accurate due to high mesh distortion and loss of mass from erosion. The study was further extended to analyze bird-strike on a composite wing leading-edge. With validation from experimental results, the developed modeling methodology was also used to analyze other fluid-structure interactive systems such as structural damage caused by aircraft ditching over water.
机译:在本文中,已经进行了无网格拉格朗日方案和耦合拉格朗日-欧拉方案的比较研究,以评估它们在分析流体-结构相互作用系统中的整体效率和有效性。已经研究了在代表主要和次要飞机结构的复合层压板上发生的软碰撞事件。模拟了几种具有不同鸟类速度的案例,以观察软体撞击的非直线行为,以及所采用的建模方法的缺点。无网格拉格朗日模型产生较高的初始峰值力,而拉格朗日-欧拉耦合方法更平稳地捕获了冲击窗,而没有明显的尖峰。这些方案也已与传统的拉格朗日方法进行了比较,该方法由于较高的网格变形和侵蚀造成的质量损失而被证明不太准确。该研究进一步扩展到分析复合材料机翼前缘的鸟击。经过实验结果的验证,开发的建模方法还可以用于分析其他流体-结构相互作用系统,例如飞机因水上滑行造成的结构破坏。

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