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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Dynamics of a capsule flowing in a tube under pulsatile flow
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Dynamics of a capsule flowing in a tube under pulsatile flow

机译:在脉动流下管中流动的胶囊的动态

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We analyze numerically the behavior of a deformable micro-capsule confined in a pipe under a pulsatile flow. The capsule moves and is deformed by the action of a pulsatile flow inside the tube with a non-null mean velocity. This configuration can be found in the nature and in many bioengineering systems where artificial capsules are driven by micro-pumps through micro-channels. The capsule is considered as a thin hyperelastic membrane, which encloses an internal fluid. As it has been demonstrated in the literature, this model represents a wide range of artificial capsules, for example, the alginate-based capsules, typically used in bioengineering applications. A hybrid isogeometric finite element method and boundary element method based on a T-spline discretization and formulated in the time domain is used to solve the mechanical and hydrodynamical equations. The influence of the relative rigidity of the membrane, frequency and amplitude of the pulsatile flow is studied. Results show that the behavior of the capsule differs from steady flows and it depends strongly on the frequency of the flow and mechanical characteristic of the capsule.
机译:我们在数值上分析了在脉动流动下局限于管道中的可变形微胶囊的行为。胶囊移动并通过管内部的脉动流动的作用而变形,具有非零均匀速度。这种配置可以在性质和许多生物工程系统中找到,其中人造胶囊通过微泵通过微泵驱动。胶囊被认为是薄的超弹性膜,其包围内部流体。如文献中已经证明,该模型代表了广泛的人造胶囊,例如,基于藻酸盐的胶囊,通常用于生物工程应用。基于T条状离散化并在时域中配制的混合ISogeometric有限元方法和边界元方法来解决机械和流体动力学方程。研究了膜,脉动流动的相对刚度的影响,脉动流的频率和幅度。结果表明,胶囊的行为与稳定流量不同,这取决于胶囊的流动频率和机械特性的频率。

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