首页> 外文期刊>Journal of Engineering Mechanics >Fast Kinematic Limit Analysis of FRP-Reinforced Masonry Vaults. I: General Genetic Algorithm-NURBS-Based Formulation
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Fast Kinematic Limit Analysis of FRP-Reinforced Masonry Vaults. I: General Genetic Algorithm-NURBS-Based Formulation

机译:FRP加固砌体拱顶的快速运动极限分析。 我:一般遗传算法 - 基于NURBS的配方

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A new approach for the limit analysis of masonry vaults retrofitted with fiber-reinforced polymers (FRP) based on an upper bound formulation is presented in this paper. In particular, a new genetic algorithm (GA)-nonuniform rational b-spline (NURBS)-based general framework for the limit analysis of curved masonry structures tailored upon an upper bound formulation is discussed thoroughly in the present Part I. A given FRP-reinforced masonry vault can be geometrically represented by a NURBS parametric surface, and a NURBS mesh of the given surface can be generated. Each element of the mesh is a NURBS surface itself and can be idealized as a rigid body. An upper bound limit analysis formulation, which takes into account the main characteristics of masonry material and FRP reinforcement, is deduced, with internal dissipation allowed exclusively along element interfaces. The approach is capable of well predicting the load-bearing capacity of any reinforced masonry vault of arbitrary shape, provided that the initial mesh is adaptively adjusted by means of a metaheuristic approach (i.e., a suitable GA) to enforce that element edges accurately approximate the actual failure mechanism. The approach is validated and discussed in Part II, which is devoted to presenting a number of structural analyses of FRP-reinforced vaults. (C) 2017 American Society of Civil Engineers.
机译:本文提出了一种基于上侧配方的纤维增强聚合物(FRP)改造的砌体拱顶极限分析的新方法。特别地,在当前部分I中彻底讨论了基于上述制剂的弯曲砌体结构的限制分析的新的遗传算法(GA)-Noniform RationA合理的B样条(NURBS)的一般框架。在本部分I中彻底讨论了给定的FRP-增强砌体Vault可以由NURBS参数表面几何上表示,并且可以产生给定表面的NURBS网。网格的每个元素是NURBS表面本身,可以理想化为刚体。引用了上限的极限分析配方,考虑了砌体材料和FRP加固的主要特性,包括沿元件接口专门允许的内部耗散。该方法能够良好地预测任意形状的任何增强砌体拱顶的承载能力,只要初始网格通过成致造物方法(即,合适的GA)来自适应地调节,以便精确地逼近该元件边缘实际失败机制。该方法是在II部分验证和讨论的,该第II部分致力于呈现出一些FRP加强拱顶的结构分析。 (c)2017美国土木工程师协会。

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