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Unstructured Mesh Manipulation in Response to Surface Deformation

机译:响应表面变形的非结构化网格处理

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摘要

The Winslow elliptic smoothing equations have been shown to be effective for smoothing structured and unstructured computational meshes used in computational fluid dynamics applications. Although an implicit computational space is readily available for structured meshes, an explicitly constructed space is required for unstructured meshes. For a three-dimensional mesh, a method is presented where the original physical space is manipulated to generate virtual control volumes that can be employed as an effective computational space. A two-phase volume deformation scheme is implemented to effectively address mesh requirements for the viscous region near a no-slip slip surface. Region-limited smoothing is employed to fine tune the mesh smoothing to specific areas of interest and greatly increase the efficiency of the overall process. A tool called MeshGrind is used to demonstrate elliptic mesh manipulation and smoothing on practical engineering applications. Several test cases demonstrate Winslow elliptic smoothing on unstructured meshes including bioinspired flapping wing applications, design optimization, and dynamically deforming nozzles. The techniques presented here are shown to be effective for significant surface movements involving large mesh deformations in both viscous and inviscid regions.
机译:Winslow椭圆平滑方程已被证明可有效平滑计算流体动力学应用中使用的结构化和非结构化计算网格。尽管隐式计算空间可用于结构化网格,但非结构化网格需要显式构建的空间。对于三维网格,提出了一种方法,其中原始物理空间经过处理以生成虚拟控制体积,这些虚拟控制体积可用作有效的计算空间。实施了两相体积变形方案,以有效解决靠近防滑滑动面的粘性区域的网格需求。使用区域限制的平滑来将网格平滑微调到感兴趣的特定区域,并大大提高整个过程的效率。称为MeshGrind的工具用于在实际工程应用中演示椭圆形网格的处理和平滑。多个测试案例证明了Winslow椭圆在非结构化网格上的平滑效果,包括生物启发式扑翼应用,设计优化和动态变形喷嘴。此处介绍的技术对于在粘性和不粘区域都涉及较大的网格变形的有效表面运动已证明是有效的。

著录项

  • 来源
    《AIAA Journal》 |2016年第1期|331-342|共12页
  • 作者单位

    Integrated Test & Evaluat Branch, Arnold Engn Dev Complex, Arnold Air Force Base, TN 37389 USA;

    Integrated Test & Evaluat Branch, Arnold Engn Dev Complex, Arnold Air Force Base, TN 37389 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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