Asynchronous time integration while achieving zero interface energy

Radim Dvořák, Radek Kolman, Jan Falta, Michaela Neühauserová
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Abstract

This contribution deals with an asynchronous direct time integration of the finite-element model. The proposed method is applied to the phenomenon of wave propagation through an elastic linear continuum. The numerical model is partitioned into individual subdomains using the domain decomposition method by means of localized Lagrange multipliers. For each subdomain, different time discretizations are used. No restrictions for relation between subdomain’s time steps are imposed. The coupling of the subdomains is forced by an acceleration continuity condition. Additionally, we use the a posteriori technique to also provide the displacement and velocity continuity at the interfaces, and hence we obtain exact continuity of all three kinematic fields. The proposed method is experimentally validated using the modified SHPB (split Hopkinson pressure bar) setup.
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异步时间积分,同时实现零接口能量
这个贡献处理了有限单元模型的异步直接时间积分。将该方法应用于波在弹性线性连续介质中的传播现象。采用局部拉格朗日乘子法将数值模型划分为各个子域。对于每个子域,使用不同的时间离散化。子域时间步长之间的关系不受限制。子域的耦合是由加速度连续性条件强制实现的。此外,我们还使用后验技术提供了界面处的位移和速度连续性,从而获得了所有三个运动场的精确连续性。采用改进的SHPB (split Hopkinson pressure bar)装置对该方法进行了实验验证。
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