Abstract
We propose a quasi-Newton algorithm for solving fluid-structure interaction problems. The basic idea of the method is to build an approximate tangent operator which is cost effective and which takes into account the so-called added mass effect. Various test cases show that the method allows a significant reduction of the computational effort compared to relaxed fixed point algorithms. We present 2D and 3D fluid-structure simulations performed either with a simple ID structure model or with shells in large displacements.
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Gerbeau, J. F., & Vidrascu, M. (2003). A quasi-Newton algorithm based on a reduced model for fluid-structure interaction problems in blood flows. Mathematical Modelling and Numerical Analysis, 37(4), 631–647. https://doi.org/10.1051/m2an:2003049
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