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Amplification of seismic demands in inter-storey-isolated buildings subjected to near fault pulse type ground motions

机译:靠近故障脉冲型地面运动的层间隔离建筑物中抗震要求的放大

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Inter Storey Isolation (ISI) shows promise for seismic vibration control in relatively tall buildings. With proper design, an ISI system isolates the upper storey block (USB) and emulates the effect of a nonconventional Tuned Mass Damper (TMD) on the Lower Storey Block (LSB) to reduce the seismic responses considerably. The vulnerability of conventional Base Isolation (BI) under pulse type motions was reported in the past. This study demonstrates the adverse effect of pulse type motions on the performance of ISI systems. An inclusive set of building configurations and bearing typology for the ISI system are employed and are subjected to two suites of unidirectional pulse and non-pulse type ground motions pertaining to varying hazard levels. Extensive nonlinear dynamic analysis of the frame-ISI systems are carried out. Representative statistics of the pertinent responses from each suite are contrasted to demarcate the effect of pulse type motions. The pulse type motions are shown to degenerate the efficiency of an ISI system to significantly amplify the seismic demands (and associated uncertainties) by allowing transmission of low frequency components (reminiscent of pulse(s)) to the response time histories. Response-specific amplification factors for the demands are assessed. The FEMA suggested guideline is shown to severely underestimates the bearing displacements, which is potentially dangerous. This deficiency is addressed by suggesting a modification factor in the FEMA formulae. The influence of the pulse period, mass ratio, damping in the bearing and hazard levels on the amplification of demands are discussed. However, this investigation considers a limited number of framing systems and isolation bearings subjected to a limited number of ground motions, which may be expanded in future study.
机译:Inter StoTey隔离(ISI)显示了相对高层建筑中地震振动控制的承诺。通过适当的设计,ISI系统将上层块(USB)隔离,并模拟在下层块(LSB)上的非转化调谐质量阻尼器(TMD)的效果,以显着降低地震响应。过去报道了常规基部隔离(BI)的脆弱性。本研究表明脉冲型动作对ISI系统性能的不利影响。采用了ISI系统的包容性建筑配置和轴承类型,并进行了两套单向脉冲和非脉冲型接地运动,与不同的危险水平不同。进行了帧ISI系统的广泛非线性动态分析。每个套件的相关反应的代表性统计数据与划分脉冲型动作的效果形成鲜明对比。脉冲型运动被示出为通过允许允许低频分量的传输来解析ISI系统的效率,以显着放大地震要求(和相关的不确定因素)(使脉冲)传递到响应时间历史。评估需求的响应特异性放大因子。表明FEMA建议的指导方针严重低估了轴承位移,这可能是危险的。通过暗示FEMA公式中的修改因素来解决这种缺陷。讨论了脉冲周期,质量比,阻尼在轴承和危险水平上的影响,并在提高需求上进行。然而,该调查考虑了有限数量的框架系统和经过有限数量的地面运动的隔离轴承,这可能会在未来的研究中扩大。

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