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首页> 外文期刊>Journal of Asian architecture and building engineering >Evaluating Topological Optimized Layout of Building Structures by Using Nodal Material Density Based Bilinear Interpolation
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Evaluating Topological Optimized Layout of Building Structures by Using Nodal Material Density Based Bilinear Interpolation

机译:基于节点材料密度的双线性插值法评估建筑结构的拓扑优化布局

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This study presents a boundary representation of Eulerian-type in order to achieve conceptual structural layouts of building structures by relieving material discontinuities of structural topology optimization in comparison with classical ones. According to the partition of unity concept, a bilinear interpolation can be employed by nodal densities and shape functions with the use of discretization of four-node square elements and then material properties, i.e. here, densities in finite elements are not constant but variational values. As a result, the improvement of material continuity can be established as optimal topologies, and numerical singularity and zigzag material boundaries which may occur in classical topology optimization design are relieved. Numerical applications verify the efficiency of this method by evaluating this conceptual structural layout approach for designing building structures.
机译:这项研究提出了欧拉型的边界表示,目的是通过减轻与经典布局相比结构拓扑优化的材料不连续性来实现建筑结构的概念性结构布局。根据单位概念的划分,节点密度和形状函数可通过使用四节点正方形元素离散化来实现双线性插值,然后使用材料特性(即此处有限元素中的密度不是常数而是变化值)进行双线性插值。结果,可以将材料连续性的改善确定为最佳拓扑,从而减轻了经典拓扑优化设计中可能出现的数值奇异性和锯齿形材料边界。数值应用通过评估用于设计建筑结构的这种概念性结构布局方法,验证了该方法的有效性。

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