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NURBS-based kinematic limit analysis of FRP-reinforced masonry walls with out-of-plane loading

机译:基于NURBS的平面外荷载下FRP加固砌体墙的运动极限分析

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摘要

A three-dimensional (3D) general upper-bound limit analysis procedure for the determination of the collapse load of out-of-plane loaded masonry walls with Fiber Reinforced Polymer (FRP) reinforcement strips is presented. The geometry of a given FRP reinforced masonry wall of arbitrary shape is represented by its Non-Uniform Rational B-Spline (NURBS) description in the three-dimensional Euclidean space. The NURBS parameter space is partitioned by means of a number of possible fracture lines and the original reinforced wall geometry is subdivided into an initial set of rigid elements, accordingly. An upper-bound limit analysis formulation, accounting for the main characteristics of both masonry material and FRP reinforcement by means of homogenization techniques, is deduced. Internal dissipation is allowed along element edges only and the effect of vertical loads and membrane stresses is considered as well. Numerical experiments show that a good estimate of the load bearing capacity is obtained provided that the initial arrangement of yield lines is adjusted by means of a suitable Genetic Algorithm (GA).
机译:提出了一种三维(3D)通用上限分析程序,用于确定具有纤维增强聚合物(FRP)增强条的平面外荷载砌体墙的倒塌荷载。给定的任意形状的FRP加固砌体墙的几何形状由其在三维欧氏空间中的非均匀有理B样条曲线(NURBS)描述表示。 NURBS参数空间通过许多可能的断裂线进行划分,并且相应地将原始的钢筋墙几何形状细分为一组初始的刚性单元。推导了上限分析公式,该公式考虑了砖石材料和玻璃纤维增​​强材料均质化技术的主要特征。内部耗散仅允许沿元件边缘进行,并且还考虑了垂直载荷和膜应力的影响。数值实验表明,只要通过合适的遗传算法(GA)调整屈服线的初始排列,就可以很好地估计承重能力。

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