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A new hybrid explicit/implicit in-plane-out-of-plane separated representation for the solution of dynamic problems defined in plate-like domains

机译:一种新的混合式显式/隐式面内面外分离表示法,用于解决板状域中定义的动态问题

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The present paper extends in-plane-out-of-plane separated representations successfully used for addressing fully 3D model solutions defined in plate-like domain, to dynamics. Common time integration are performed using explicit or implicit strategies. Even if the implementation of implicit integration schemes into a 3D in-plane-out-of-plane separated representation does not imply major difficulties, the use of explicit integration preferable in many applications becomes a tricky issue. In fact the mesh employed for discretizing the out-of-plane dimension (thickness) determines the maximum time-step ensuring stability. In this paper we introduce a new efficient hybrid explicit/implicit in-plane-out-of plane separated representation for dynamic problems defined in plate-like domains that allows computing 3D solutions with the stability constraint exclusively determined by the coarser in-plane discretization. (C) 2018 Published by Elsevier Ltd.
机译:本文将成功用于解决在板状域中定义的完整3D模型解决方案的面内面外分离表示法扩展到了动力学。公共时间积分是使用显式或隐式策略执行的。即使将隐式集成方案实施到3D平面内,平面外分离表示中并不意味着很大的困难,但在许多应用程序中优选使用显式集成仍然是棘手的问题。实际上,用于离散平面外尺寸(厚度)的网格确定了确保稳定性的最大时间步长。在本文中,我们针对板状域中定义的动态问题引入了一种新的有效的混合式显式/隐式平面内-平面外分离表示,该表达式允许计算3D解,其稳定性约束仅由较粗的平面内离散化确定。 (C)2018由Elsevier Ltd.发布

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