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Effect of soil in controlling the seismic response of three-dimensional PBPD high-rise concrete structures

机译:土壤对三维PBPD高层混凝土结构地震响应的控制作用

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In the last decades, valuable results have been reported regarding conventional passive, active, semi-active, and hybrid structural control systems on two-dimensional and a few three-dimensional shear buildings. In this research, using a three-dimensional finite element model of high-rise concrete structures, designed by performance based plastic design method, it was attempted to construct a relatively close to reality model of concrete structures equipped with Tuned Mass Damper (TMD) by considering the effect of soil-structure interaction (SSI), torsion effect, hysteresis behavior and cracking effect of concrete. In contrast to previous studies which have focused mainly on linearly designed structures, in this study, using performance-based plastic design (PBPD) design approach, nonlinear behavior of the structures was considered from the beginning of the design stage. Inelastic time history analysis on a detailed model of twenty-story concrete structure was performed under a far-field ground motion record set. The seismic responses of the structure by considering SSI effect are studied by eight main objective functions that are related to the performance of the structure, containing: lateral displacement, acceleration, inter-story drift, plastic energy dissipation, shear force, number of plastic hinges, local plastic energy and rotation of plastic hinges. The tuning problem of TMD based on tuned mass spectra is set by considering five of the eight previously described functions. Results reveal that the structural damage distribution range is retracted and inter-story drift distribution in height of the structure is more uniform. It is strongly suggested to consider the effect of SSI in structural design and analysis.
机译:在过去的几十年中,已经报道了关于二维和少量三维剪切建筑物上的常规被动,主动,半主动和混合结构控制系统的宝贵成果。在这项研究中,使用通过基于性能的塑性设计方法设计的高层混凝土结构的三维有限元模型,尝试通过以下方法构建配备了Tuned Mass Damper(TMD)的混凝土结构的相对接近现实的模型:考虑土-结构相互作用(SSI),扭转效应,滞后行为和混凝土的开裂效应。与以前的研究主要集中于线性设计的结构相比,在本研究中,使用基于性能的塑料设计(PBPD)设计方法,从设计阶段的开始就考虑了结构的非线性行为。在远场地面运动记录集下,对二十层混凝土结构的详细模型进行了非弹性时程分析。通过与结构性能相关的八个主要目标函数研究了考虑SSI效应的结构的地震响应,其中包括:横向位移,加速度,层间漂移,塑性能量耗散,剪切力,塑料铰链数,局部塑性能和塑料铰链的旋转。通过考虑上述八个功能中的五个来设置基于调谐质谱的TMD调谐问题。结果表明,结构损伤的分布范围缩小了,结构高度的层间漂移分布更加均匀。强烈建议考虑SSI在结构设计和分析中的作用。

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