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Reference map technique for finite-strain elasticity and fluid-solid interaction

机译:有限应变弹性和流固耦合的参考图技术

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The reference map, defined as the inverse motion function, is utilized in an Eulerian-frame representation of continuum solid mechanics, leading to a simple, explicit finite-difference method for solids undergoing finite deformations. We investigate the accuracy and applicability of the technique for a range of finite-strain elasticity laws under various geometries and loadings. Capacity to model dynamic, static, and quasi-static conditions is shown. Specifications of the approach are demonstrated for handling irregularly shaped and/or moving boundaries, as well as shock solutions. The technique is also integrated within a fluid-solid framework using a level-set to discern phases and using a standard explicit fluid solver for the fluid phases. We employ a sharp-interface method to institute the interfaciai conditions, and the resulting scheme is shown to efficiently capture fluid-solid interaction solutions in several examples.
机译:参考图定义为反向运动函数,用于连续体固体力学的欧拉框架表示中,从而为经受有限变形的固体提供了一种简单,显式的有限差分方法。我们研究了该技术在各种几何形状和载荷下对一系列有限应变弹性定律的准确性和适用性。显示了建模动态,静态和准静态条件的能力。演示了该方法的规范,可用于处理形状不规则和/或移动边界以及冲击解决方案。该技术还集成到了使用水平集识别相并使用标准显式流体求解器进行流体相的流固框架中。我们采用尖锐的界面方法来建立界面条件,并在几个示例中显示了所得方案可有效捕获流固相互作用。

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