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Abstracts of the Papers Published in Journal of the Japan Society for Aeronautical and Space Sciences

机译:《日本航空航天科学学会杂志》上发表的论文摘要

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摘要

In recent years, the aerodynamic analysis using computational fluid dynamics (CFD) has been widely used in the actual aircraft design. Especially, unstructured mesh method is widely used now, because it can treat complex objects. However, there are several difficulties in the current CFD, for example difficulty in the large scale parallel computation, in the mesh generation applying to the much complex objects, in the deformation of the volume mesh, and so on. To overcome these issues, the Building-Cube Method (BCM) based on the equi-spaced Cartesian mesh has been proposed. As is widely recognized, the biggest issue to use Cartesian mesh approach is the treatment of wall boundaries. In this study, Immersed Boundary Method (IBM) with ghost cell/image point approach is implemented. Virtual flux concept is also implemented to compute thin components like trailing edge of a wing. The Cartesian mesh solver has advantages in treating the moving boundary problems, because of the easy mesh generations. Therefore, the nonlinear flutter simulations are also carried out by direct coupling of the compressible Building-Cube Method and the structural equations.
机译:近年来,使用计算流体动力学(CFD)进行的空气动力学分析已广泛用于实际的飞机设计中。特别是,非结构化网格方法由于可以处理复杂的对象而被广泛使用。但是,当前的CFD存在一些困难,例如,大规模并行计算,应用于非常复杂的对象的网格生成,体积网格的变形等困难。为了克服这些问题,已经提出了基于等距笛卡尔网格的建筑立方体方法(BCM)。众所周知,使用笛卡尔网格方法的最大问题是墙边界的处理。在这项研究中,实现了具有重影单元/图像点方法的浸入边界方法(IBM)。虚拟通量概念也已实现以计算薄组件,如机翼后缘。笛卡尔网格求解器由于易于生成网格,因此在处理运动边界问题方面具有优势。因此,非线性颤振模拟也可以通过可压缩建筑立方体法和结构方程的直接耦合来进行。

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