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Extension of the hybrid force/displacement (HFD) seismic design method to 3D steel moment-resisting frame buildings

机译:将混合力/位移(HFD)抗震设计方法扩展到3D钢制抗弯框架建筑物

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The hybrid force/displacement (HFD) seismic design method for planar steel frames developed by the authors is extended to 3D steel buildings using moment-resisting frames. HFD combines the advantages of both the displacement-based and the force-based seismic design methods and reduces or eliminates their disadvantages. An extensive response databank is developed through nonlinear dynamic analyses on 38 steel space frames designed according to Eurocodes 3 and 8 and subjected to 42 pairs of earthquake ground motions. This response databank is then utilized for the development of empirical formulae providing the behavior factor as a function of the geometrical and dynamic characteristics of the building, including its accidental eccentricity, as well as the target maximum interstorey drift ratio and local ductility. Thus, the proposed seismic design method, eventhough works as a force-based design one, controls structural and non-structural damage through the use of a behavior factor which is a function of seismic deformation demands. Numerical examples are presented to illustrate the proposed method and demonstrate its merits over the force-based seismic design method of Eurocode 8. (C) 2017 Elsevier Ltd. All rights reserved.
机译:作者开发的用于平面钢框架的混合力/位移(HFD)地震设计方法已扩展到使用抗弯框架的3D钢建筑物。 HFD结合了基于位移和基于力的地震设计方法的优点,并减少或消除了它们的缺点。通过对根据欧洲规范3和8设计的38个钢制空间框架进行非线性动力学分析,建立了广泛的响应数据库,并进行了42对地震地面运动。然后,将该响应数据库用于开发经验公式,以提供行为因子作为建筑物的几何和动态特征的函数,包括其偶然的偏心率,目标最大层间漂移率和局部延性。因此,所提出的抗震设计方法尽管是一种基于力的设计方法,但通过使用行为因子来控制结构和非结构破坏,该行为因子是地震变形需求的函数。给出了数值示例,以说明所提出的方法,并证明其优于Eurocode 8基于力的抗震设计方法。(C)2017 Elsevier Ltd.保留所有权利。

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