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An evaluation of force-based design vs. direct displacement-based design of jointed precast post-tensioned wall systems

机译:联合预制后张墙系统基于力的设计与基于直接位移的设计的评估

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摘要

The unique features of jointed post-tensioned wall systems, which include minimum structural damage and re-centering capability when subjected to earthquake lateral loads, are the result of using unbonded post-tensioning to attach the walls to the foundation, along with employing energy dissipating shear connectors between the walls. Using acceptance criteria defined in terms of inter-story drift, residual drift, and floor acceleration, this study presents a multiple-level performance-based seismic evaluation of two five-story unbonded post-tensioned jointed precast wall systems. The design and analysis of these two wall systems, established as the direct displacement-based and force-based solutions for a prototype building used in the PREcast Seismic Structural Systems (PRESSS) program, were performed at 60% scale so that the analysis model could be validated using the PRESSS test data. Both buildings satisfied the performance criteria at four levels of earthquake motions although the design base shear of the direct displacement-based jointed wall system was 50% of that demanded by the force-based design method. The study also investigated the feasibility of controlling the maximum transient inter-story drift in a jointed wall system by increasing the number of energy dissipating shear connectors between the walls but without significantly affecting its re-centering capability.
机译:联合后张紧墙系统的独特功能,包括最小的结构破坏和承受地震侧向载荷时的重新定心能力,是由于使用了无粘结后张紧将墙连接到基础以及耗能的结果。墙之间的剪力连接器。使用根据层间漂移,残余漂移和地板加速度定义的验收标准,本研究对两个五层无粘结后张预应力节理预制墙系统进行了基于性能的多级地震评估。这两个墙体系统的设计和分析被确定为预制地震结构系统(PRESSS)程序中使用的原型建筑物的基于直接位移和基于力的解决方案,其缩放比例为60%,因此分析模型可以使用PRESSS测试数据进行验证。尽管直接位移为基础的节理墙系统的设计基础剪力为基于力的设计方法所要求的剪力的50%,但两栋建筑物均满足四个地震运动的性能标准。该研究还研究了通过增加墙之间的耗能剪切连接器的数量来控制节理墙系统中最大瞬时层间漂移的可行性,但又不会显着影响其重新居中的能力。

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