首页> 外文会议>International Conference on Structural Dynamics >AN INNOVATIVE VOXEL-BASED APPROACH FOR THE OUT-OF- PLANE HOMOGENIZED LIMIT ANALYSIS OF NON-PERIODIC MULTI-LEAF MASONRY WALLS
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AN INNOVATIVE VOXEL-BASED APPROACH FOR THE OUT-OF- PLANE HOMOGENIZED LIMIT ANALYSIS OF NON-PERIODIC MULTI-LEAF MASONRY WALLS

机译:一种基于体素的基于体素的均质均质极限分析,非周期性多叶砌体墙壁分析

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A recurring construction technique in many European countries (Italy included) is based on the erection of multi-leaf walls. Their seismic vulnerability is usually high, due to the fact that the wythes are poorly or by no means connected one each other. Hence, masonry buildings with multi-leaf walls regularly display an insufficient strength against out-of-plane actions (such as those caused by earthquakes and those causing the highest vulnerability), which leads to partial or total collapse. This paper proposes a novel approach devoted to the out-of-plane analysis of masonry multi-leaf walls at collapse, with special attention given to the case of non-periodic masonry - in which the units display different geometries and are randomly arranged in the walls. This approach is based on the so-called “voxel strategy”, in which the 3D finite element mesh of a multi-leaf wall is created directly from the rasterized images of its external wythes. Every pixel of the rasterized images is transformed into its 3D counterpart (the “voxel”, indeed), which is then converted into a solid finite element. The “voxel strategy” for generating the finite element mesh is translated into a MATLAB function, which is itself part of a broader limit analysis approach based on the upper bound theorem, that aims at deriving homogenized out-of-plane failure surfaces. These represent macroscopic out-of-plane strength criteria for the selected non-periodic multi-leaf masonry walls;;they are expressed in terms of flexural and torsional moments around the horizontal and vertical axes of the considered wall. The approach also enables the extraction of the deformed shapes at collapse for single out-of-plane load conditions. The homogenized out-of-plane failure surfaces are the results of an upper bound limit analysis problem coupled with homogenization, aptly formulated as a standard-form linear programming problem. The solid finite elements of the created mesh are rigid, and the velocity jumps at the interfaces between adjacent finite elements obey a Mohr-Coulomb failure criterion with separate tension and compression cut-offs and associated flow rule. A case study is investigated to benchmark the procedure, namely a rubble masonry three-leaf wall with absente interconnection between leaves.
机译:许多欧洲国家(包括意大利)的重复施工技术是基于多叶墙的勃起。他们的地震脆弱性通常很高,因为这是WYTHES很差或绝不互相连接。因此,具有多叶墙的砌体建筑定期显示不足的强度,防止平面外动作(例如由地震引起的那些,导致漏洞最高的人),这导致部分或完全崩溃。本文提出了一种新的方法,致力于坍塌砌体多叶墙壁外平面分析,特别关注非周期性砌体的情况 - 其中单位显示不同的几何形状,随机排列墙壁。该方法基于所谓的“体素策略”,其中多叶壁的3D有限元网是直接从其外部Wythes的光栅化图像创建的。将光栅化图像的每个像素转换为其3D对应物(“体素”,实际上),然后将其转换为固体有限元。用于产生有限元网的“体素策略”被翻译成MATLAB功能,这本身是基于上限定理的更广泛限制分析方法的一部分,其旨在导出均质外平面故障表面。这些表示所选择的非周期性多叶砌体墙壁的宏观外强度标准;它们以所考虑的墙壁的水平和垂直轴周围的弯曲和扭转力矩表示。该方法还使得能够在坍塌时提取变形的形状,以进行单一外平面负载条件。均质外平面失效表面是与均质化相结合的上限限制分析问题的结果,适当地制定为标准形式的线性编程问题。所产生的网格的固体有限元是刚性的,并且在相邻的有限元之间的界面处跳跃遵守具有单独张力和压缩截止的Mohr-coulomb失败标准和相关的流量规则。研究了案例研究以基准,即瓦砾砌体三叶壁,叶片之间的缺陷互连。

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