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Non-linear transient analysis of a blast-loaded circular plate resting on nonviscous fluid

机译:基于非粘性流体的爆破圆板的非线性瞬态分析

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摘要

A new coupled finite element and Hankel integral transform formulation is developed for the non-linear transient analysis of floating thin circular plates subjected to shock loads. Using Kirchhoff thin plate theory, an axisymmetric ring is formulated, which takes into account geometric and material non-linearities as well as strain-rate effects. The fluid pressure field due to the fluid-structural interaction is calculated by solving the integral equations in the context of an element discretization method. Velocity function of the plate is interpolated by nodal velocity using Lagrange polynomials. The time-dependent solution of the coupled fluid-structure system is solved by applying a staggered solution algorithm at each time step in a direct time-integration procedure. To verify the method, results are compared with the hydro code LS-DYNA and good agreement is obtained. Furthermore, the influence of media density on the final deformation is analyzed. It is shown that the damping effect of the fluid reduces the deformation and stress of the plate greatly, especially for thin plates.
机译:开发了一种新的耦合有限元法和汉克尔积分变换公式,用于对承受冲击载荷的浮动薄圆板进行非线性瞬态分析。使用基尔霍夫薄板理论,制定了一个轴对称环,该环考虑了几何和材料非线性以及应变率效应。在单元离散化方法的背景下,通过求解积分方程来计算由于流体-结构相互作用而产生的流体压力场。使用拉格朗日多项式通过节点速度对板的速度函数进行插值。通过在直接时间积分过程中的每个时间步应用交错求解算法来求解耦合流体结构系统的时间相关解。为了验证该方法,将结果与液压代码LS-DYNA进行了比较,并获得了很好的一致性。此外,分析了介质密度对最终变形的影响。结果表明,流体的阻尼作用极大地减小了板的变形和应力,特别是对于薄板。

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