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首页> 外文期刊>International Journal of Solids and Structures >Closed-form super element method for tall buildings of irregular geometry
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Closed-form super element method for tall buildings of irregular geometry

机译:不规则几何高层建筑的封闭形式超单元法

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Acquiring insight in the structural behaviour of tall buildings of irregular geometry is challenging. The contribution of the shaft torsional rigidity and the in-plane floor stiffness are difficult to model. At discrete changes in geometry, disturbances occur in the force flow, whose magnitude and influence field are difficult to estimate and whose influence may not be disregarded. FEM programs provide a quick result for a particular building, but cannot answer the general question how the building response is governed by decisive structural parameters. In this paper, this want is supplied by developing a closed-form super element method for two frequently occurring building types. The building is divided in a very small number of super elements. Only at the heights where changes in properties of the building occur, a node between super elements is introduced. For each super element the stiffness matrix and load vector is derived on basis of a set of simultaneous differential, resulting in closed-form solutions. The foundation stiffness is accounted for. The primary aim of the presented super element method is to increase understanding of the structural behaviour of irregular tall buildings.
机译:要获得对具有不规则几何形状的高层建筑的结构行为的洞察力具有挑战性。轴扭转刚度和平面内地板刚度的贡献很难建模。在几何形状离散变化时,在力流中会发生扰动,其大小和影响场难以估计,其影响可能不会被忽略。 FEM程序可为特定建筑物提供快速结果,但无法回答一般性问题,即建筑物的响应如何由决定性的结构参数控制。在本文中,通过为两种经常出现的建筑类型开发封闭形式的超元方法来满足这一需求。该建筑分为极少数的超级元素。仅在建筑物属性发生变化的高度,才在超级元素之间引入节点。对于每个超级元素,基于一组同时微分得出刚度矩阵和载荷矢量,从而得出封闭形式的解。计入基础刚度。提出的超级元素方法的主要目的是增进对不规则高层建筑结构行为的理解。

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