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Robust moving mesh algorithms for hybrid stretched meshes: Application to moving boundaries problems

机译:混合拉伸网格的鲁棒移动网格算法:应用于移动边界问题

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摘要

A robust Mesh-Mover Algorithm (MMA) approach is designed to adapt meshes of moving boundaries problems. A new methodology is developed from the best combination of well-known algorithms in order to preserve the quality of initial meshes. In most situations, MMAs distribute mesh deformation while preserving a good mesh quality. However, invalid meshes are generated when the motion is complex and/or involves multiple bodies. After studying a few MMA limitations, we propose the following approach: use the Inverse Distance Weighting (IDW) function to produce the displacement field, then apply the Geometric Element Transformation Method (GETMe) smoothing algorithms to improve the resulting mesh quality, and use an untangler to revert negative elements. The proposed approach has been proven efficient to adapt meshes for various realistic aerodynamic motions: a symmetric wing that has suffered large tip bending and twisting and the high-lift components of a swept wing that has moved to different flight stages. Finally, the fluid flow problem has been solved on meshes that have moved and they have produced results close to experimental ones. However, for situations where moving boundaries are too close to each other, more improvements need to be made or other approaches should be taken, such as an overset grid method. (C) 2016 Elsevier Inc. All rights reserved.
机译:健壮的网格移动器算法(MMA)方法旨在适应移动边界问题的网格。为了保持初始网格的质量,从已知算法的最佳组合中开发了一种新方法。在大多数情况下,MMA可以分散网格变形,同时保持良好的网格质量。但是,当运动复杂和/或涉及多个实体时,会生成无效的网格。在研究了一些MMA局限性之后,我们提出了以下方法:使用反距离权重(IDW)函数产生位移场,然后应用“几何元素变换方法”(GETMe)平滑算法来改善所得的网格质量,并使用解开消极元素。实践证明,所提出的方法可以有效地使网格适应各种实际的空气动力学运动:遭受大的尖端弯曲和扭曲的对称机翼,以及转移到不同飞行阶段的后掠机翼的高升力组件。最后,已经解决了已经移动的网格上的流体流动问题,并且它们产生的结果接近于实验的结果。但是,对于移动边界彼此之间过于接近的情况,需要进行更多的改进或应采用其他方法,例如,覆盖网格方法。 (C)2016 Elsevier Inc.保留所有权利。

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