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Fast Vulnerability Evaluation of Masonry Towers by Means of an Interactive and Adaptive 3D Kinematic Limit Analysis with Pre-assigned Failure Mechanisms

机译:通过具有预先分配的故障机制的交互式和自适应3D运动学限制分析,通过交互式和自适应3D运动学分析快速脆弱性评估砌体塔

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The paper presents an interactive kinematic limit analysis approach that can be handled also by inexperienced users for a reliable evaluation of the seismic vulnerability of masonry towers. The procedure requires only a 3D Computer-Aided Design CAD representation of the tower and the mechanical properties to assign to the different volumes. Five possible failure mechanisms are hypothesized, corresponding to those more frequently observed during post-earthquake surveys. They are all constituted by few macro-blocks mutually roto-translating and the code proposed automatically optimizes the shape of the selected failure mechanisms with a Genetic Algorithm GA approach, minimizing the failure multiplier-in agreement with the upper bound theorem of limit analysis-so furnishing quickly an estimation of the collapse acceleration and the crack pattern at collapse. The approach has several advantages, the most important being (1) the possibility to account for the actual geometry of the tower in an extremely detailed manner (so considering openings, irregularities, mass variation along the height, etc.), (2) the drastically reduced computational burden needed (only the recursive evaluation of the principle of virtual powers is required), (3) the adaptation of the failure mechanisms to the specificity of the problem treated, (4) the possibility to apply distributions of horizontal loads different from standard ones and finally (5) the possibility of utilization for all those practitioners not familiar with finite elements and computational limit analysis. The practical procedure proposed is validated against FE pushover computations and non-linear dynamic analyses conducted on two historical towers located in northern Italy, showing perfect agreement with results obtainable by means of complex procedures certainly not manageable at a common professional level.
机译:本文介绍了一个交互式运动限制分析方法,也可以通过缺乏经验的用户来处理,以获得对砌体塔的地震脆弱性的可靠评估。该过程只需要塔的3D计算机辅助设计CAD表示和分配给不同卷的机械属性。假设五种可能的故障机制,对应于在地震后调查期间更常见的那些。它们全部由很少的宏块相互转换,并且提出的代码自动优化具有遗传算法GA方法的所选失败机制的形状,最小化故障乘法器与限制分析的上限定理相一致 - 所以快速提供折叠加速度和崩溃裂纹模式的估计。该方法具有几个优点,最重要的是(1)可能以极其详细的方式解释塔的实际几何形状(所以考虑开口,不规则,沿着高度等的质量变化等),(2)所需的计算负担急剧减少(只需要虚拟电量原理的递归评估),(3)将失败机制的适应适应处理所处理的问题的特殊性,(4)施加水平载荷分布的可能性不同的可能性标准终于(5)对不熟悉有限元和计算限制分析的所有那些从业者使用的可能性。建议的实用程序验证了对位于意大利北部的两座历史塔上进行的Fe Pushover计算和非线性动态分析,与其在普通专业水平上肯定不可扫描的复杂程序可获得的完美协议。

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