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ArchLab: a MATLAB tool for the Thrust Line Analysis of masonry arches

机译:Archlab:用于砌体拱的推力线分析的Matlab工具

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According to Heyman’s safe theorem of the limit analysis of masonry structures, the safety of masonry arches can be verified by finding at least one line of thrust entirely laying within the masonry and in equilibrium with external loads. If such a solution does exist, two extreme configurations of the thrust line can be determined, respectively referred to as solutions of minimum and maximum thrust. In this paper it is presented a numerical procedure for determining both these solutions with reference to masonry arches of general shape, subjected to both vertical and horizontal loads. The algorithm takes advantage of a simplification of the equations underlying the Thrust Network Analysis. Actually, for the case of planar lines of thrust, the horizontal components of the reference thrusts can be computed in closed form at each iteration and for any arbitrary loading condition. The heights of the points of the thrust line are then computed by solving a constrained linear optimization problem by means of the Dual-Simplex algorithm. The MATLAB implementation of presented algorithm is described in detail and made freely available to interested users (https://bit.ly/3krlVxH). Two numerical examples regarding a pointed and a lowered circular arch are presented in order to show the performance of the method.
机译:根据HEYMAN的安全定理,砌体结构的极限分析,通过在与外部负荷的平衡中找到至少一系列铺设一系列推力可以验证砖石拱的安全。如果存在这样的解决方案,则可以确定推力线的两个极端配置,分别称为最小和最大推力的溶液。在本文中,介绍了一种用于在垂直和水平载荷经受垂直和水平载荷的一般形状的砌体拱门来确定这些解决方案的数值过程。该算法利用了推力网络分析的基本方程的简化。实际上,对于平面推力的情况,参考推力的水平分量可以在每次迭代处以封闭形式计算,并且用于任何任意加载条件。然后通过双单简单算法求解受约束的线性优化问题来计算推力线的点的高度。呈现算法的MATLAB实现将详细描述,并自由地为感兴趣的用户(https://bit.ly/3krlvxh)。提出了关于指向指向的圆形拱的两个数值示例,以便显示该方法的性能。

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