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首页> 外文期刊>Computers & mathematics with applications >Projection-based stabilization of interface Lagrange multipliers in immersogeometric fluid-thin structure interaction analysis, with application to heart valve modeling
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Projection-based stabilization of interface Lagrange multipliers in immersogeometric fluid-thin structure interaction analysis, with application to heart valve modeling

机译:拉格朗日乘子的基于投影的稳定化在沉浸几何流体薄结构相互作用分析中的应用及其在心脏瓣膜建模中的应用

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摘要

This paper discusses a method of stabilizing Lagrange multiplier fields used to couple thin immersed shell structures and surrounding fluids. The method retains essential conservation properties by stabilizing only the portion of the constraint orthogonal to a coarse multiplier space. This stabilization can easily be applied within iterative methods or semi-implicit time integrators that avoid directly solving a saddle point problem for the Lagrange multiplier field. Heart valve simulations demonstrate applicability of the proposed method to 3D unsteady simulations. An appendix sketches the relation between the proposed method and a high-order-accurate approach for simpler model problems. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文讨论了一种稳定拉格朗日乘子场的方法,该方法用于耦合薄的沉入式壳结构和周围流体。该方法通过仅稳定与粗略乘子空间正交的约束部分来保留必要的守恒性质。可以轻松地在迭代方法或半隐式时间积分器中应用此稳定化方法,这些方法避免直接解决Lagrange乘子场的鞍点问题。心脏瓣膜仿真证明了该方法对3D非稳态仿真的适用性。附录概述了所提出的方法与用于更简单模型问题的高阶精确方法之间的关系。 (C)2017 Elsevier Ltd.保留所有权利。

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