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Automatic element size calculation in quadrilateral finite element models of structural engineering objects

机译:结构工程对象四边形有限元模型中的单元尺寸自动计算

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Finite element mesh generators need varieties of input data parameters in order to generate meshes in accordance with user requirements. One of such parameters is a desirable step size, to be set individually on each boundary entity. That parameter directly influences the actual elements' sizes in the vicinity of the boundary. Since a to-be-meshed geometrical domain may contain dozens and hundreds of entities (both boundary and internal), it is highly desirable to set those parameter values automatically, with two goals to be pursued: step sizes must be small enough to make the mesh generation feasible, and at the same time large enough to minimize the final number of elements as much as possible. A similar problem arises around refinement points, where concentrated forces or mechanical constraints are applied. This paper provides detailed description of developed powerful algorithms delivering solutions of those problems in 2D structural engineering models.
机译:有限元网格生成器需要各种输入数据参数,以便根据用户要求生成网格。这些参数之一是理想的步长,将在每个边界实体上单独设置。该参数直接影响边界附近实际元素的大小。由于要划分的几何域可能包含数十个实体(边界实体和内部实体),因此非常希望自动设置这些参数值,并要遵循两个目标:步长必须足够小以使生成网格是可行的,同时又要足够大,以最大程度地减少元素的最终数量。在精炼点附近也会出现类似的问题,在精炼点上会施加集中力或机械约束。本文提供了已开发的功能强大的算法的详细说明,这些算法可为2D结构工程模型中的这些问题提供解决方案。

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