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Accounting for Torsional Response in Direct Displacement-based Design of Plan-asymmetric Reinforced Concrete Frame Buildings

机译:平面不对称钢筋混凝土框架结构基于直接位移的扭转响应计算

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摘要

The torsional response of Reinforced Concrete (RC) frame buildings within the Direct Displacement-Based Design (DDBD) framework is considered by using semi-empirical equations developed for wall-type asymmetric structures. These equations when applied to RC frame buildings result in the underestimation of engineering demand parameters such as drifts. To alleviate this problem, it is proposed that first-mode effective masses of the frames are connected with rigid bar, constraining the system so that the critical frames' design displacements are not exceeded and displacement compatibility for all frames is maintained. The proposed method of seismic design is verified by a Nonlinear Time History Analysis (NTHA) of two six-story plan-asymmetric RC frame buildings, the only difference in the buildings being that one is applied with equal mass and the other variable mass along the height. Eleven ground motions are selected and scaled to match a design response spectrum of a given seismic hazard level at the building site. The proposed design procedure produces reasonable response outputs when verified by NTHA of the case studies. Thus, it is a step toward minimizing the use of NTHA for plan-asymmetric frame buildings, thereby saving computational resources and effort.
机译:通过使用针对墙型非对称结构开发的半经验方程,可以考虑直接基于位移的设计(DDBD)框架内钢筋混凝土(RC)框架建筑物的扭转响应。将这些方程式应用于RC框架建筑物时,会低估工程需求参数(例如,漂移)。为了缓解这个问题,建议框架的第一模式有效质量与刚性杆连接,从而限制了系统,从而不超过关键框架的设计位移,并保持了所有框架的位移兼容性。通过非线性时程分析(NTHA)验证了两座六层平面不对称RC框架建筑的抗震设计方法,其中的唯一区别是,一栋建筑的质量相等,而另一栋建筑的质量可变。高度。选择并缩放了11种地面运动,以匹配建筑工地上给定地震危险等级的设计响应谱。经案例研究的NTHA验证后,提出的设计程序会产生合理的响应输出。因此,这是朝着尽量减少将NTHA用于平面非对称框架建筑物的步骤,从而节省了计算资源和工作量。

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