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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - A new 3D immersed boundary method for non-Newtonian fluid-structure-interaction with application

机译:APS-000TH流体动力学APS划分的年会 - 事件 - 一种新的3D浸没边界法,用于非牛顿流体结构与应用的互动

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Motivated by fluid-structure-interaction (FSI) phenomena in life sciences (e.g., motions of sperm and cytoskeleton in complex fluids), we introduce a new immersed boundary method for FSI problems involving non-Newtonian fluids in three dimensions. The non-Newtonian fluids are modelled by the FENE-P model (including the Oldroyd-B model as an especial case) and numerically solved by a lattice Boltzmann scheme (the D3Q7 model). The fluid flow is modelled by the lattice Boltzmann equations and numerically solved by the D3Q19 model. The deformable structure and the fluid-structure-interaction are handled by the immersed boundary method. As an application, we study a FSI toy problem --- interaction of an elastic plate (flapped at its leading edge and restricted nowhere else) with a non-Newtonian fluid in a 3D flow.
机译:通过生命科学的流体结构 - 相互作用(FSI)现象(例如,复杂流体中精子的动作),我们为三维涉及非牛顿流体的FSI问题引入了一种新的浸没边界方法。非牛顿流体由FENE-P型号(包括oldroyd-B型号作为特殊情况)建模,并通过格子Boltzmann方案(D3Q7模型)进行数值求解。流体流动由晶格Boltzmann方程建模,并由D3Q19模型进行数值求解。可变形结构和流体结构相互作用由浸没边界法处理。作为一个应用,我们研究了FSI玩具问题---弹性板(在其前缘拍摄并限制其他地方)的相互作用,其中非牛顿流体在3D流中。

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