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AN EMBEDDED BOUNDARY FORMULATION FOR LARGE-EDDY SIMULATION OF TURBULENT FLOWS INTERACTING WITH MOVING BOUNDARIES

机译:湍流与运动边界相互作用的大涡模拟的嵌入式边界公式

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摘要

A non-boundary-conforming formulation for simulating transitional and turbulent flows with complex geometries and dynamically moving boundaries on fixed orthogonal grids is developed. The underlying finite-difference solver for the filtered incompressible Navier-Stokes equations in both Cartesian and cylindrical coordinates is based on a second-order fractional step method on staggered grid. To satisfy the boundary conditions on an arbitrary immersed interface, the velocity field at the grid points near the interface is reconstructed locally without smearing the sharp interface. The complications caused by the Eulerian grid points emerging from a moving solid body into the fluid phase are treated with a novel ``field-extension'' strategy. To treat the two-way interactions between the fluid and structure, a strong coupling scheme based on Hamming's fourth-order predictor-corrector method has been developed. The fluid and the structure are treated as elements of a single dynamical system, and all of the governing equations are integrated simultaneously, and iteratively in the time-domain. A variety of two and three-dimensional fluid-structure interaction problems of increasing complexity have been considered to demonstrate the accuracy and the range of applicability of the method. In particular, forced vibrations of a rigid circular cylinder including the harmonic in-line vibrations in a quiescent fluid and the transverse vibrations in a free-stream, and the vortex-induced vibrations of an elastic cylinder with one and two degrees of freedom in a free-stream are presented and compared with reference simulations and experiments. Three-dimensional DNS and LES of fluid flows involving stationary complex geometries include the flow past a sphere at $Re=50 sim 1,000$, the transitional flow past an airfoil with a $10^circ$ attack angle at $Re=10,000$. Then, the turbulent flow over a traveling wavy wall at $Re=10,170$ are simulated are compared with the detailed DNS using body-fitted grid in the literature. Finally, the simulation of the transitional flow past a prosthetic mechanical heart valve with moving leaflets at $Re=4,000$ has been performed. All results are in good agreement with the available reference data.
机译:提出了一种非边界一致的公式,用于模拟具有复杂几何形状并在固定正交网格上动态移动边界的过渡和湍流。笛卡尔坐标系和圆柱坐标系中滤波后的不可压缩Navier-Stokes方程的基础有限差分求解器基于交错网格上的二阶分数步法。为了满足任意浸入式界面的边界条件,在不涂抹尖锐界面的情况下,局部重构了界面附近网格点处的速度场。由新颖的``场扩展''策略处理了由从移动的固体进入液相的欧拉网格点引起的复杂性。为了处理流体与结构之间的双向相互作用,开发了基于汉明四阶预测-校正方法的强耦合方案。流体和结构被视为单个动力学系统的元素,并且所有控制方程都在时域中同时迭代地集成。已经考虑了越来越复杂的各种二维和三维流体-结构相互作用问题,以证明该方法的准确性和适用范围。尤其是刚性圆柱体的强制振动,包括静态流体中的谐波直列振动和自由流中的横向振动,以及在一个圆柱体中具有一个和两个自由度的弹性圆柱体的涡激振动。提出了自由流并将其与参考模拟和实验进行比较。涉及固定复杂几何形状的流体的三维DNS和LES流包括经过$ Re = 50 sim 1,000 $的球体的流,经过$ 10 ^ circ $迎角的$ Re = 10,000 $的翼型的过渡流。 。然后,使用文献中的人体拟合网格,将在$ Re = 10,170 $处行进的波浪壁上的湍流进行了模拟,并与详细的DNS进行了比较。最终,对经过人工瓣膜假体机械心脏瓣膜的过渡流动进行了仿真,瓣膜的运动瓣在$ Re = 4,000 $。所有结果均与可用参考数据高度吻合。

著录项

  • 作者

    Yang Jianming;

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  • 年度 2005
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  • 原文格式 PDF
  • 正文语种 en_US
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