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Finite element analysis of alternative load paths to prevent disproportionate collapse in platform-type CLT floor systems

机译:替代负载路径的有限元分析,防止平台型CLT楼层系统中的不成比例坍塌

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摘要

Multi-storey buildings require mitigation of consequences of unexpected or accidental events, to prevent disproportionate collapse after an initial damage. Cross-laminated timber (CLT) in platform-type construction is increasingly used for multi-storey buildings, however, the collapse behaviour and alternative load paths (ALPs) are not fully understood. A 3D non-linear component-based finite element model was developed for a platformtype CLT floor system to study the ALPs after an internal wall loss, in a pushdown analysis. The model, which accounted for connection failure, timber crushing and large displacements, was calibrated to experimental results and then adapted for boundary conditions corresponding to typical residential and office buildings. Subsequently, five parameters (floor span, connection type, vertical location of the floor, tying level, horizontal wall stiffness) were varied, to study their effects on the ALPs in 80 models. The results showed that three ALPs occurred, of which catenary action was the most dominant. Collapse resistance was mainly affected by the floor span, followed by the axial strength, stiffness and ductility of the floor-to-floor connection, the weight of the level above and the floor panel thickness. This study provides an approach to model ALPs in a platform-type CLT floor system to design disproportionate collapse resistant multi-storey CLT buildings.
机译:多层建筑需要减轻意外或偶然事件的后果,以防止初始损害后的不成比例崩溃。平台型结构中的交叉层压木材(CLT)越来越多地用于多层建筑物,然而,崩溃行为和替代负载路径(ALP)尚未完全理解。基于3D非线性组件的有限元模型为平台CLT底板系统开发,用于在下推分析中在内壁损失后研究阿尔卑斯山。该模型占连接失败,木材破碎和大型位移,被校准到实验结果,然后适用于对应于典型住宅和办公楼的边界条件。随后,多种参数(楼层跨度,连接型,垂直位置的地板,捆扎水平,水平壁刚度),以研究80种型号的对阿尔卑斯山的影响。结果表明,发生了三个阿尔卑斯山,其中腺瘤作用是最占优势的。塌陷抗性主要受到底跨度的影响,其次是沿落地连接的轴向强度,刚度和延展性,高于上方水平的重量和地板厚度。本研究提供了一种在平台型CLT地板系统中模拟阿尔卑斯山的方法,以设计不成比例的抗塌陷多层CLT建筑。

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