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Adaptive moving mesh level set method for structure topology optimization

机译:自适应移动网格水平集的结构拓扑优化方法

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The level set method is a promising approach to provide flexibility in dealing with topological changes during structural optimization. Normally, the level set surface, which depicts a structure's topology by a level contour set of a continuous scalar function embedded in space, is interpolated on a fixed mesh. The accuracy of the boundary positions is therefore largely dependent on the mesh density, a characteristic of any Eulerian expression when using a fixed mesh. This article combines the adaptive moving mesh method with a level set structure topology optimization method. The finite element mesh automatically maintains a high nodal density around the structural boundaries of the material domain, whereas the mesh topology remains unchanged. Numerical experiments demonstrate the effect of the combination of a Lagrangian expression for a moving mesh and a Eulerian expression for capturing the moving boundaries.
机译:水平集方法是一种有前途的方法,可以在结构优化过程中灵活地处理拓扑变化。通常,将水平集曲面插值到固定网格上,该水平集曲面通过嵌入在空间中的连续标量函数的水平轮廓集来描述结构的拓扑。因此,边界位置的精度很大程度上取决于网格密度,网格密度是使用固定网格时任何欧拉表达式的特征。本文将自适应运动网格方法与水平集结构拓扑优化方法相结合。有限元网格自动在材料域的结构边界周围保持高节点密度,而网格拓扑保持不变。数值实验证明了拉格朗日表达式对移动网格和欧拉表达式对捕获移动边界的组合的影响。

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