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A Genetic Algorithm NURBS-based new approach for fast kinematic limit analysis of masonry vaults

机译:基于遗传算法NURBS的砌体金库运动极限快速分析新方法

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摘要

The present paper proposes a new Genetic Algorithm NURBS-based approach for the limit analysis of masonry vaults based on an upper bound formulation. A given masonry vault geometry can be represented by a NURBS (Non-Uniform Rational B-Spline) 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 is deduced, with internal dissipation allowed exclusively along element edges. The approach is capable of well predicting the load bearing capacity of any masonry vault of generic shape. It is proved that, even by using a mesh constituted by very few elements, a good estimate of the collapse load multiplier is obtained provided that the initial mesh is adjusted by means of a meta-heuristic approach (i.e. a Genetic Algorithm, GA) in order to enforce that element edges accurately represent the actual failure mechanism. The proposed method turns out to be both accurate and much less computationally expensive than existing methods for the limit analysis of masonry vaults.
机译:本文提出了一种基于遗传算法的基于NURBS的砌体库极限分析的新方法,该方法基于上限公式。给定的砌体库几何形状可以由NURBS(非均匀有理B样条曲线)参数化曲面表示,并且可以生成给定曲面的NURBS网格。网格的每个元素本身都是NURBS曲面,可以理想化为刚体。推导了一个上限分析公式,该公式考虑了砖石材料的主要特性,并且仅允许沿元素边缘进行内部耗散。该方法能够很好地预测任何通用形状的砌筑金库的承载能力。事实证明,即使通过使用由很少元素组成的网格,只要通过使用元启发式方法(即遗传算法,GA)对初始网格进行调整,也可以很好地估计倒塌载荷乘数。为了强制该元素边缘准确地代表实际的失效机制。与现有的砌体金库极限分析方法相比,所提出的方法既准确又节省了计算成本。

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