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Tie-force procedure for disproportionate collapse prevention of CLT platform-type construction

机译:CLT平台型施工不成比例地崩溃的系态程序

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摘要

The existing tie-force requirements for disproportionate collapse prevention, as prescribed in the current European codes and American guidelines, are unpractical for the design of Cross-laminated timber (CLT) buildings with platform-type construction. An approach towards meeting structural integrity for such buildings is presented in this paper, specifically an improved procedure to quantify the minimum longitudinal, transverse and vertical tie-force requirements. This indirect approach for disproportionate collapse prevention solely applies linear-elastic static principles of engineering mechanics to satisfy force and moment equilibriums and ensure that CLT platform-type buildings have sufficient strength, stiffness, and ductility to bridge over damaged walls. Cantilever action of the walls and catenary action of the floor panels are identified as the main collapse resistance mechanisms. Case-study building analyses show that typical seismic design connection detailing can be used to trigger cantilever action, whereas novel connection detailing is required to meet the axial force and deformation demands required for catenary action. The procedure presented herein can aid in designing mid-rise CLT platform-type buildings for disproportionate collapse prevention.
机译:在当前欧洲代码和美国指南中规定的现有崩溃预防的抗崩塌预防的搭配要求对具有平台型施工的交叉层压木材(CLT)建筑物的设计是不可挽求的。本文提出了一种满足这种建筑物结构完整性的方法,特别是一种改进的过程,用于量化最小纵向,横向和垂直系列要求。这种不成比例的崩塌防止的间接方法仅适用于工程力学的线性弹性静态原理来满足力和力矩平衡,并确保CLT平台型建筑具有足够的强度,刚度和延展性对损坏的墙壁上的桥梁。悬臂上的墙壁和地板裂缝作用的作用被识别为主要塌陷电阻机制。案例研究建筑分析表明,典型的地震设计连接细节可用于触发悬臂作用,而新的连接细节需要满足延伸延长作用所需的轴向力和变形需求。本文呈现的程序可以有助于设计中升CLT平台型建筑,以防止崩溃的崩溃。

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