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Seismic response of 20-story base-isolated and fixed-base reinforced concrete structural wall buildings at a near-fault site

机译:近断层现场20层基础隔震和固定基础钢筋混凝土结构墙建筑的地震反应

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This paper investigates numerically the seismic response of six seismically base-isolated (BI) 20-story reinforced concrete buildings and compares their response to that of a fixed-base (FB) building with a similar structural system above ground. Located in Berkeley, California, 2 km from the Hay ward fault, the buildings are designed with a core wall that provides most of the lateral force resistance above ground. For the BI buildings, the following are investigated: two isolation systems (both implemented below a three-story basement), isolation periods equal to 4, 5, and 6 s, and two levels of flexural strength of the wall. The first isolation system combines tension-resistant friction pendulum bearings and nonlinear fluid viscous dampers (NFVDs); the second combines low-friction tension-resistant crosslinear bearings, lead-rubber bearings, and NFVDs. The designs of all buildings satisfy ASCE 7-10 requirements, except that one component of horizontal excitation, is used in the 2D nonlinear response history analysis. Analysis is performed for a set of ground motions scaled to the design earthquake and to the maximum considered earthquake (MCE). At both the design earthquake and the MCE, the FB building develops large inelastic deformations and shear forces in the wall and large floor accelerations. At the MCE, four of the BI buildings experience nominally elastic response of the wall, with floor accelerations and shear forces being 0.25 to 0.55 times those experienced by the FB building. The response of the FB and four of the BI buildings to four unsealed historical pulse-like near-fault ground motions is also studied.
机译:本文通过数值研究了6座地震隔离的20层钢筋混凝土建筑的地震响应,并将其与具有类似地面结构系统的固定基底(FB)的地震响应进行了比较。这些建筑物位于加利福尼亚州伯克利市,距海沃德断层2公里,其设计采用核心墙,可提供大部分地面上的横向力。对于BI建筑物,进行了以下研究:两个隔离系统(均在三层地下室以下实施),隔离时间等于4、5和6 s,并且墙体具有两个水平的抗弯强度。第一个隔离系统将抗拉摩擦摆轴承和非线性流体粘性阻尼器(NFVD)结合在一起;第二种是低摩擦抗拉交叉直线轴承,铅橡胶轴承和NFVD。所有建筑物的设计都满足ASCE 7-10的要求,只是在二维非线性响应历史分析中使用了水平激励的一个分量。对一组根据设计地震和最大考虑地震(MCE)缩放的地面运动进行分析。在设计地震和MCE中,FB建筑物在壁中都会产生较大的非弹性变形和剪切力,并在地面上产生较大的加速度。在MCE,四个BI建筑物经历了名义上的墙体弹性响应,地板加速度和剪力是FB建筑物的0.25至0.55倍。还研究了FB和四个BI建筑物对四个未密封的历史脉冲状近断层地震动的响应。

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