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首页> 外文期刊>Proceedings of the Institution of Civil Engineers >Limit analysis approach for the in-plane collapse of masonry arches
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Limit analysis approach for the in-plane collapse of masonry arches

机译:砌体拱门面内坍塌的极限分析方法

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This paper deals with the numerical evaluation of the in-plane collapse behaviour of unreinforced masonry arches and portals characterised by different geometries subjected to several loading conditions and modelled as assemblages of rigid blocks in contact through no-tensional and frictional interfaces. This study has been conducted using a new inhouse code, which represents the updated version of the numerical procedure presented in the pioneering work of Baggio and Trovalusci). The minimisation problem corresponding to the upper-bound (or kinematic) approach of limit analysis is written as a linear programming problem solved taking advantages of the algorithms nowadays available. An important feature of the code is the capability to provide information about the sliding collapse of masonry structures, adopting the assumption of dilatancy in the analytic description of the yielding surface, permitting to overcome the classical Heyman’s hypothesis, which limited the investigation of collapse to only hinging modes. A key contribution of this study is the comparison of results in terms of collapse multipliers and collapse mechanisms, considering different literature contributes as benchmark references. This research reveals the suitability of approaches based on mathematical programming and the crucial role played by sliding.
机译:本文涉及不合因的砌体拱​​门和门户面内塌陷行为的数值评估,其特征在于经过几种负载条件,并以通过无张力和摩擦接口接触的刚性块的组装而建模。本研究已经使用新的Inhouse代码进行,该内部代表了Baggio和TrovalUSCI的开创性工作中呈现的数值程序的更新版本)。对应于极限分析的上限分析的最小化问题被写入当今可用算法优势的线性编程问题。代码的一个重要特征是提供有关砌体结构的滑动崩溃的信息,采用在屈服表面的分析描述中采用稀释性的假设,允许克服古典的Heyman的假设,这限制了对崩溃的调查铰链模式。考虑到不同的文献作为基准引用,考虑到基准引用,这项研究的主要贡献是对崩溃乘法器和崩溃机制的结果的比较。本研究揭示了基于数学规划方法的适用性,并通过滑动作用的关键作用。

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