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An Immersed Interface Method for the Incompressible Navier-Stokes Equations in Irregular Domains

机译:不规则域中不可压缩Navier-stokes方程的浸入式接口方法

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摘要

We present an immersed interface method for the incompressible Navier Stokes equations capable of handling rigid immersed boundaries. The immersed boundary is represented by a set of Lagrangian control points. In order to guarantee that the no-slip condition on the boundary is satisfied, singular forces are applied on the fluid at the immersed boundary. The forces are related to the jumps in pressure and the jumps in the derivatives of both pressure and velocity, and are interpolated using cubic splines. The strength of singular forces is determined by solving a small system of equations at each time step. The Navier-Stokes equations are discretized on a staggered Cartesian grid by a second order accurate projection method for pressure and velocity.
机译:我们提出了一种能够处理刚性沉浸边界的不可压缩Navier Stokes方程的沉浸界面方法。浸入边界由一组拉格朗日控制点表示。为了确保边界上的防滑条件得到满足,将奇异力施加到浸没边界上的流体上。力与压力的跳跃以及压力和速度的导数的跳跃有关,并使用三次样条进行插值。奇异力的强度是通过在每个时间步求解一个小的方程组来确定的。通过二阶精确的压力和速度投影方法,在交错的笛卡尔网格上离散Navier-Stokes方程。

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