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Seismic performance assessment of conventional CLT shear wall structures and post-tensioned CLT shear wall structures

机译:常规CLT剪力墙结构和后张CLT剪力墙结构的抗震性能评估

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This paper presents the performance-based seismic assessment framework on conventional CLT shear wall structures (C-CLTStrs) and post-tensioned CLT shear wall structures (PT-CLTStrs). Numerical models of both the conventional CLT shear walls and the PT CLT shear walls were developed and calibrated with experimental results. A direct displacement-based design (DDD) procedure was then developed and demonstrated by the design examples of one 8-storey C-CLTStr and a set of 8-, 12-, and 16-storey PT-CLTStrs. Corresponding simplified structural models were developed. A series of pushover and time-history dynamic analysis was conducted afterwards to calibrate the calculated structural performance objectives with the design targets of the DDD procedure. Finally, using 50 mainshock (MS) and 50 mainshock-aftershock (MSAS) earthquake records, probability seismic demanding analysis (PSDA) were conducted to evaluate two engineering demanding parameters of the structures, namely the maximum inter-storey drift (MaxISDR) and the residual inter-storey drift (ResISDR). The MaxISDR limit states of the PT-CLTStrs are recommended at 0.7%, 1.4%, and 2.2% for the immediate occupancy (IO), life safety (LS), and collapse prevention (CP) hazard levels, respectively. The MaxISDR of the PT-CLTStrs is almost twice that of the C-CLTStrs, while the ResISDR is at most 50% of that of the C-CLTStrs. The damage probability of the 8-storey PT-CLTStr indicated by ResISDR is not significantly sensitive to the consideration of aftershocks seismic input, whereas, when aftershocks are considered, up to a 7.0% difference under the LS hazard level is caused in the damage probability of the 8-storey C-CLTStr indicated by ResISDR.
机译:本文介绍了基于性能的常规CLT剪力墙结构(C-CLTStrs)和后张式CLT剪力墙结构(PT-CLTStrs)的地震评估框架。开发了常规CLT剪力墙和PT CLT剪力墙的数值模型,并根据实验结果进行了校准。然后,开发了一种基于直接位移的设计(DDD)程序,并通过一个8层C-CLTStr和一组8层,12层和16层PT-CLTStr的设计示例进行了演示。开发了相应的简化结构模型。随后进行了一系列推覆和时程动态分析,以将计算出的结构性能目标与DDD程序的设计目标进行校准。最后,利用50个主震(MS)和50个主震-余震(MSAS)地震记录,进行了概率地震需求分析(PSDA),以评估结构的两个工程需求参数,即最大层间漂移(MaxISDR)和最大层间漂移。剩余层间漂移(ResISDR)。 PT-CLTStrs的MaxISDR极限状态分别建议为即时占用率(IO),生命安全(LS)和崩溃预防(CP)危险等级为0.7%,1.4%和2.2%。 PT-CLTStr的MaxISDR几乎是C-CLTStr的两倍,而ResISDR最多是C-CLTStr的50%。 ResISDR指示的8层PT-CLTStr的损坏概率对余震地震输入的考虑并不显着敏感,而考虑余震时,在LS危险等级下造成的损坏概率差异最大为7.0% ResISDR指示的8层C-CLTStr的位置。

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