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首页> 外文期刊>International Journal for Numerical Methods in Fluids >Towards consistent hybrid overset mesh methods for rotorcraft CFD
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Towards consistent hybrid overset mesh methods for rotorcraft CFD

机译:走向旋翼飞行器CFD的一致混合过冲网格方法

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摘要

The overset mesh method chimera is popular within the rotorcraft research community, because the use of multiple, non-matching grids make the CFD simulations of bodies in relative motion much simpler. Consequently, the relative motion between the helicopter blades and fuselage can be accurately accounted for. In this paper, the method for treating overset grids within CFD codes is presented. It is compatible with multiblock, structured-grid solvers. The proposed method is based on hierarchy of overset, non-matching grids, whose cells are automatically identified as computational or non-computational and localised with respect to all grids they overlap with. The efficiency of the method relies on the hierarchical, multi-step approach, for the overset mesh localisation and the use of a tree search. Because of the high efficiency of the algorithm, the search for overlapping cells can be carried out on-the-fly, during time-marching of the unsteady, implicit CFD solver. In addition, the algorithm is suitable for parallel execution. The method has been demonstrated for several flows, ranging from simple aerofoils to rotor-body interaction. The paper presents and demonstrates the method and shows that it has a low CPU overhead. It also highlights the limitations of the method and suggests remedies for improvement.
机译:重叠网格方法嵌合体在旋翼飞机研究界很流行,因为使用多个不匹配的网格使相对运动的CFD模拟变得更加简单。因此,直升机叶片和机身之间的相对运动可以被准确地说明。本文提出了一种在CFD代码中处理过剩网格的方法。它与多块结构化网格求解器兼容。所提出的方法基于重叠的,不匹配的网格的层次结构,其网格被自动识别为计算或非计算的,并且相对于与之重叠的所有网格进行局部化。该方法的效率依赖于分层的多步骤方法,用于过度的网格定位和树搜索的使用。由于该算法的高效率,可以在不稳定的隐式CFD求解器的时间行进过程中即时搜索重叠单元。另外,该算法适用于并行执行。已经证明该方法适用于多种流动,从简单的机翼到旋翼与机体的相互作用。本文介绍并演示了该方法,并表明它具有较低的CPU开销。它还强调了该方法的局限性,并提出了改进措施。

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