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Adaptive form-finding method for form-fixed spatial network structures

机译:固定形式的空间网络结构的自适应找形方法

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An effective form-finding method for form-fixed spatial network structures is presented in this paper. The adaptive form-finding method is introduced along with the example of designing an ellipsoidal network dome with bar length variations being as small as possible. A typical spherical geodesic network is selected as an initial state, having bar lengths in a limit group number. Next, this network is transformed into the ellipsoidal shape as desired by applying compressions on bars according to the bar length variations caused by transformation. Afterwards, the dynamic relaxation method is employed to explicitly integrate the node positions by applying residual forces. During the form-finding process, the boundary condition of constraining nodes on the ellipsoid surface is innovatively considered as reactions on the normal direction of the surface at node positions, which are balanced with the components of the nodal forces in a reverse direction induced by compressions on bars. The node positions are also corrected according to the fixed-form condition in each explicit iteration step. In the serial results of time history, the optimal solution is found from a time history of states by properly choosing convergence criteria, and the presented form-finding procedure is proved to be applicable for form-fixed problems.
机译:提出了一种有效的形式固定空间网络结构形式查找方法。引入了自适应找形方法,并设计了一个椭圆形的球型圆顶,其杆长变化尽可能小。选择典型的球形测地线网络作为初始状态,其条形长度为极限组数。接下来,根据变形导致的钢筋长度变化,通过对钢筋施加压缩,从而根据需要将该网络转化为椭圆形。然后,采用动态松弛方法通过施加残余力来显式整合节点位置。在找形过程中,将椭圆形表面上约束节点的边界条件创新地视为在节点位置处表面法线方向上的反作用力,该反作用力与由压缩引起的节点力在反方向上的分量保持平衡在酒吧。在每个显式迭代步骤中,还会根据固定形式的条件对节点位置进行校正。在时间历程的序列的结果,最佳解决方案是由状态的时间历史通过适当选择收敛准则找到,并且所呈现的形式调查过程被证明是适用于形状固定问题。

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