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Fast fluid-structure interaction simulations using a displacement-based finite element model equipped with an explicit streamline integration prediction

机译:使用基于位移的有限元模型和显式流线集成预测进行快速的流固耦合仿真

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We propose here a displacement-based updated Lagrangian fluid model developed to facilitate a monolithic coupling with a wide range of structural elements described in terms of displacements. The novelty of the model consists in the use of the explicit streamline integration for predicting the end-of-step configuration of the fluid domain. It is shown that this prediction considerably alleviates the time step size restrictions faced by the former Lagrangian models due to the possibility of an element inversion within one time step. The method is validated and compared with conventional approaches using three numerical examples. Time step size and corresponding Courant numbers leading to optimal behavior in terms of computational efficiency are identified. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们在此提出一种基于位移的更新拉格朗日流体模型,该模型的开发旨在促进与位移描述的多种结构元件的整体耦合。该模型的新颖性在于使用显式流线集成来预测流体域的步长配置。结果表明,由于在一个时间步内元素反转的可能性,这种预测大大减轻了前拉格朗日模型所面临的时间步长限制。使用三个数值示例验证了该方法并将其与常规方法进行了比较。确定了在计算效率方面导致最佳行为的时间步长和相应的库兰特数。 (C)2016 Elsevier B.V.保留所有权利。

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