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Numerical simulations of blood flow in artificial and natural hearts with fluid-structure interaction.

机译:具有流体-结构相互作用的人造和自然心脏中血流的数值模拟。

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This article describes two ongoing numerical studies of fluid-structure interaction in the cardiovascular system: an idealized pulsatile ventricular assist device (VAD), consisting of two fluid chambers separated by a flexible diaphragm; and blood flow and heart wall motion during passive filling of a canine heart. Simulations have been performed for the VAD and compared with the results of a previous study and to our own preliminary experimental results. Detailed measurements of the flow field in the VAD model and additional simulations are in progress. Preliminary simulations using both an idealized model of the natural heart as well as a realistic model have identified the limitations of the current numerical methods in dealing with large three-dimensional deformations. Ongoing research aims at extending the range of simulations to include large deformations and to incorporate an anisotropic material model for the heart wall to account for the muscle fibers.
机译:本文介绍了正在进行的两项心血管系统中流体-结构相互作用的数值研究:一种理想的脉动性心室辅助装置(VAD),该装置由由柔性隔膜隔开的两个流体腔组成;犬心脏被动充盈期间的血流和心脏壁运动。对VAD进行了仿真,并将其与以前的研究结果和我们自己的初步实验结果进行了比较。 VAD模型中流场的详细测量以及其他模拟正在进行中。使用自然心脏的理想化模型和现实模型进行的初步模拟已经确定了当前数值方法在处理大型三维变形中的局限性。正在进行的研究旨在扩大模拟范围,以包括大变形,并为心脏壁合并各向异性材料模型以说明肌肉纤维。

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