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Seismic Performance Evaluation of Posttensioned Hybrid Precast Wall-Frame Buildings and Comparison with Shear Wall-Frame Buildings

机译:后张预应力混合预制墙框架房屋的抗震性能评估及与剪力墙框架房屋的比较

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Seismic performance of posttensioned hybrid precast wall systems has been mainly studied in the past without considering the interaction of the wall system with the rest of the structure. In the present study, the multilevel seismic response of posttensioned hybrid precast wall-frame (PWF) buildings is evaluated using nonlinear response history analysis and compared with the response of shear wall-frame (SWF) buildings under unidirectional excitation. For that purpose, three-dimensional finite-element models of code-compliant 4-and 8-story PWF and SWF buildings designed with different frame shear ratios are considered. The performance of buildings is evaluated under spectrum-matched earthquake motions to represent two levels of shaking viz the design earthquake (DE) level and the risk-targeted maximum considered earthquake (MCER) level. The effect of the vertical component of earthquake motion on the peak response indicators of both types of buildings is also studied. It is determined that the seismic performance of PWF buildings is superior to SWF buildings in terms of limiting structural damage under the DE-level and the MCER-level ground motions, despite the relatively larger roof drifts observed in the PWF buildings; however, nonstructural damage caused by floor accelerations is more pronounced in the PWF buildings. In addition, it is determined that the inclusion of the vertical component of earthquake motion does not significantly affect the peak response indicators of the PWF and SWF buildings considered in this study. (C) 2016 American Society of Civil Engineers.
机译:过去主要研究后张拉混合预制墙系统的抗震性能,而不考虑墙系统与结构其余部分的相互作用。在本研究中,使用非线性响应历史分析评估后张拉混合预制墙框架(PWF)建筑物的多级地震响应,并将其与单向激励下的剪力墙框架(SWF)建筑物的响应进行比较。为此,考虑了采用不同框架剪力比设计的符合代码规范的4层和8层PWF和SWF建筑物的三维有限元模型。在频谱匹配的地震运动下评估建筑物的性能,以表示振动的两个级别,即设计地震(DE)级别和风险目标最大考虑地震(MCER)级别。还研究了地震运动的垂直分量对两种类型建筑物的峰值响应指标的影响。可以确定的是,尽管在PWF建筑物中观察到相对较大的屋顶漂移,但在限制DE级和MCER级地面运动下的结构破坏方面,PWF建筑物的抗震性能优于SWF建筑物;但是,在PWF建筑物中,由地板加速度引起的非结构性损坏更为明显。此外,可以确定的是,地震运动的垂直分量的包含不会显着影响本研究中考虑的PWF和SWF建筑物的峰值响应指标。 (C)2016年美国土木工程师学会。

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