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Discrete multi-physics: A mesh-free model of blood flow in flexible biological valve including solid aggregate formation

机译:离散多物理场:无网格的柔性生物瓣膜血流模型包括固体聚集体形成

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摘要

We propose a mesh-free and discrete (particle-based) multi-physics approach for modelling the hydrodynamics in flexible biological valves. In the first part of this study, the method is successfully validated against both traditional modelling techniques and experimental data. In the second part, it is further developed to account for the formation of solid aggregates in the flow and at the membrane surface. Simulations of various types of aggregates highlight the main benefits of discrete multi-physics and indicate the potential of this approach for coupling the hydrodynamics with phenomena such as clotting and calcification in biological valves.
机译:我们提出了一种无网格且离散(基于粒子)的多物理场方法来对柔性生物阀中的流体动力学进行建模。在本研究的第一部分中,已针对传统建模技术和实验数据成功验证了该方法。在第二部分中,将其进一步发展以解决在流中和膜表面形成固体聚集体的问题。对各种类型的聚集体的仿真突出了离散多物理场的主要优点,并表明了这种方法将流体动力学与生物阀中的凝结和钙化现象耦合的潜力。

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