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首页> 外文期刊>Communications in numerical methods in engineering >Coupling strategies for biomedical fluid-structure interaction problems
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Coupling strategies for biomedical fluid-structure interaction problems

机译:生物医学流固耦合问题的耦合策略

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摘要

The coupling of lightweight and often thin-walled structures to fluids in an incompressible regime is a recurring theme in biomechanics. There are many fluid-structure interaction (FSI) solution schemes to address these kinds of problem, each one with its costs and benefits. Here, we attempt a comparison of the most important FSI schemes in the context of biomechanical problems, that is a comparison of different fixed-point schemes and a block preconditioned monolithic scheme. The emphasis of this study is on the numerical behavior of these FSI schemes to gain an understanding of their effectiveness in comparison with each other. To this end a simplified benchmark problem is studied to show its applicability for more involved biomechanical problems. Two such examples with patient-specific geometries are also discussed. The monolithic scheme proved to be much more efficient than the partitioned schemes in biomechanical problems.
机译:在不可压缩状态下将轻质结构(通常是薄壁结构)与流体耦合是生物力学中反复出现的主题。有许多流固耦合(FSI)解决方案可解决此类问题,每种方案都有其成本和收益。在这里,我们尝试比较生物力学问题中最重要的FSI方案,即比较不同的定点方案和块预处理单片方案。这项研究的重点是这些FSI方案的数值行为,以了解它们相互比较的有效性。为此,对简化的基准问题进行了研究,以显示其对更多涉及的生物力学问题的适用性。还讨论了两个具有特定于患者的几何形状的示例。在生物力学问题上,整体方案比分区方案效率更高。

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