The implications of post-tensioning losses on the seismic response of Pres-Lam frames

IF 0.8 Q4 ENGINEERING, GEOLOGICAL
G. Granello, A. Palermo, S. Pampanin, T. Smith, F. Sarti
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引用次数: 13

Abstract

Since 2010, twelve post-tensioned timber (Pres-Lam) buildings have been constructed throughout the world. In high seismic areas, Pres-Lam technology typically combines unbonded post-tensioning tendons and supplemental damping devices to provide moment capacity to beam-column, wall-foundation or column-foundation connections. Over time creep within the timber elements leads to losses in post-tensioning forces reducing the connection moment capacity. This paper analyses how different post-tensioning loss scenarios, depending on the beam-column joint detailing, impact the building’s seismic response. Two case study buildings were designed and investigated using the Acceleration Displacement Response Spectrum (ADRS) method and Non-Linear Time History Analysis (NLTHA) to predict seismic performance. These buildings were considered to be located in areas of high and low seismic risk, leading to designs with and without the use of damping devices, respectively. The results show that the building with additional damping responded with similar peak displacements, even under extreme loss scenarios. In comparison, when supplemental damping was not used, peak displacements increased significantly with post tensioning losses.
后张力损失对pre - lam框架地震反应的影响
自2010年以来,世界各地已经建造了12座后张法木材(Pres Lam)建筑。在高地震区,Pres-Lam技术通常结合无粘结后张拉钢筋束和补充阻尼装置,为梁柱、墙基础或柱基础连接提供力矩能力。随着时间的推移,木材构件内的蠕变会导致后张紧力的损失,从而降低连接力矩能力。本文分析了不同的后张拉损失情况,根据梁柱节点的细节,如何影响建筑物的地震反应。采用加速度-位移反应谱(ADRS)方法和非线性时程分析(NLTHA)对两栋案例研究建筑进行了设计和研究,以预测其抗震性能。这些建筑被认为位于地震风险高和低的地区,导致分别使用和不使用阻尼装置的设计。结果表明,即使在极端损失的情况下,具有附加阻尼的建筑也会产生类似的峰值位移。相比之下,当不使用补充阻尼时,峰值位移随着后张紧损失而显著增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
2.50
自引率
17.60%
发文量
14
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