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An immersed boundary method based on the lattice Boltzmann approach in three dimensions, with application

机译:一种基于晶格玻尔兹曼方法的三维沉浸边界方法及其应用

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The immersed boundary (IB) method originated by Peskin has been popular in modeling and simulating problems involving the interaction of a flexible structure and a viscous incompressible fluid. The Navier-Stokes (N-S) equations in the IB method are usually solved using numerical methods such as FFT and projection methods. Here in our work, the N-S equations are solved by an alternative approach, the lattice Boltzmann method (LBM). Compared to many conventional N-S solvers, the LBM can be easier to implement and more convenient for modeling additional physics in a problem. This alternative approach adds extra versatility to the immersed boundary method. In this paper we discuss the use of a 3D lattice Boltzmann model (D3Q19) within the IB method. We use this hybrid approach to simulate a viscous flow past a flexible sheet tethered at its middle line in a 3D channel and determine a drag scaling law for the sheet. Our main conclusions are: (1) the hybrid method is convergent with first-order accuracy which is consistent with the immersed boundary method in general; (2) the drag of the flexible sheet appears to scale with the inflow speed which is in sharp contrast with the square law for a rigid body in a viscous flow.
机译:佩斯金(Peskin)提出的浸入边界(IB)方法已广泛用于建模和模拟涉及柔性结构与粘性不可压缩流体相互作用的问题。 IB方法中的Navier-Stokes(N-S)方程通常使用数字方法(例如FFT和投影方法)求解。在我们的工作中,N-S方程通过另一种方法求解,即格子Boltzmann方法(LBM)。与许多常规的N-S求解器相比,LBM可以更轻松地实现,并且可以更方便地为问题中的其他物理模型建模。这种替代方法为沉浸边界方法增加了更多的通用性。在本文中,我们讨论了IB方法中3D格子Boltzmann模型(D3Q19)的使用。我们使用这种混合方法来模拟流过在3D通道中线处束缚的柔性薄板的粘性流动,并确定该薄板的阻力缩放定律。我们的主要结论是:(1)混合方法收敛于一阶精度,与一般的沉浸边界方法一致; (2)柔性片的阻力似乎与流入速度成比例,这与粘性流中刚体的平方律形成鲜明对比。

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