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An immersed boundary method to solve fluid–solid interaction problems

机译:沉浸边界方法解决流固耦合问题

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摘要

We describe an immersed-boundary technique which is adopted from the direct-forcing method. A virtual force based on the rate of momentum changes of a solid body is added to the Navier–Stokes equations. The projection method is used to solve the Navier–Stokes equations. The second-order Adam–Bashford scheme is used for the temporal discretization while the diffusive and the convective terms are discretized using the second-order central difference and upwind schemes, respectively. Some benchmark problems for both stationary and moving solid object have been simulated to demonstrate the capability of the current method in handling fluid–solid interactions.
机译:我们描述了一种从直接强制方法中采用的沉浸边界技术。基于固体动量变化率的虚拟力被添加到Navier–Stokes方程中。投影法用于求解Navier–Stokes方程。二阶Adam–Bashford方案用于时间离散化,而扩散项和对流项分别使用二阶中心差方案和迎风方案离散化。模拟了固定和移动固体物体的一些基准问题,以证明当前方法处理流体-固体相互作用的能力。

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