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Hexahedral finite element modeling method for controlling element size and storage medium therefor

机译:控制元件尺寸的六面体有限元建模方法及其存储介质

摘要

A hexahedral finite element modeling method for controlling an element size, comprising the steps of: dividing a first face of a hexahedral finite element into four uniform sections, and dividing a second face diagonally opposite to the first face into sixteen uniform sections, thus modeling the hexahedral element into a face-refined transition unit mesh module; dividing a first edge of the hexahedral finite element having two meshed faces of the face-refined transition unit mesh module in common into two uniform sections, and dividing a second edge diagonally opposite to the first edge into four uniform sections, thus modeling the hexahedral element into a face-refined transition unit mesh module; and dividing each of three faces of the hexahedral finite element, having three meshed faces of the edge-refined transition unit mesh module in common and meeting each other at a first node, into four uniform sections, and partially dividing each of other three faces, meeting each other at a second node diagonally opposite to the first node, into four uniform sections, thus modeling the hexahedral element into a vertex-refined transition unit mesh module.
机译:一种用于控制单元尺寸的六面体有限元建模方法,包括以下步骤:将六面体有限元的第一面划分为四个均匀的截面;以及将与第一面斜对角的第二面划分为十六个均匀的截面,从而对单元进行建模。将六面体元素转换为面精制的过渡单元网格模块;将具有面精制过渡单元网格模块的两个啮合面的六面体有限元的第一边共同分成两个均匀部分,并将与第一边对角线对角的第二边分成四个均匀部分,从而对六面体元素进行建模进入经过精细处理的过渡单元网格模块;将具有六边形过渡单元网格模块的三个网格面并在第一节点处彼此相遇的六面体有限元的三个面中的每个面划分为四个均匀的部分,并将其他三个面分别部分地划分,在与第一个节点对角的第二个节点处彼此相交,形成四个均匀的截面,从而将六面体元素建模为顶点精制的过渡单元网格模块。

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