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Nonlinear seismic analysis of irregular r.c. framed buildings base-isolated with friction pendulum system under near-fault excitations

机译:不规则RC的非线性地震分析在近断层激励下用摩擦摆系统进行基础隔震的框架式建筑物

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The application of the friction pendulum (FP) system is increasing due to its conceptual simplicity; yet there are still aspects of its behaviour that need further attention. Long duration intense velocity pulses in the horizontal direction and high values of the ratio between vertical and horizontal peak ground acceleration are expected in the near-fault areas. Base-isolated structures subjected to near-fault earthquakes present variation of friction force and lateral stiffness of the FP system during the sliding phase which can induce torsion with residual displacement and uplift. To investigate these effects, a nonlinear dynamic analysis is carried out considering a six-storey reinforced concrete (r.c.) framed building, characterized by an L-shaped plan with wings of different length and setbacks at different heights along the in-plan principal directions. Twelve base-isolated test structures are designed in line with the Italian seismic code, considering (besides the gravity loads) the horizontal seismic loads acting alone or in combination with the vertical ones. Three design values of the radius of curvature and two in plan distributions of dynamic-fast friction coefficient are assumed for the FP bearings, ranging from a constant value for all isolators to a different value for each. A nonlinear force-displacement law of the FP bearings is considered in the horizontal direction, depending on sliding velocity and axial load, while a gap model takes into account the vertical uplift of the FP bearings. The nonlinear seismic analysis is performed on near-fault ground motions with significant horizontal or vertical components, selected and normalized on the basis of the design hypotheses adopted for the test structure. (C) 2016 Elsevier Ltd. All rights reserved.
机译:由于其原理简单,摩擦摆(FP)系统的应用正在增加。但是其行为的某些方面仍需要进一步关注。在近断层地区,水平方向上的持续时间长的强力脉冲和垂直与水平峰值地面加速度之比的期望值较高。遭受近断层地震的基础隔离结构在滑动阶段会显示FP系统的摩擦力和侧向刚度变化,这可能会导致带有残余位移和隆起的扭转。为了研究这些影响,我们进行了非线性动态分析,考虑了六层钢筋混凝土(r.c.)框架建筑,其特征是L形平面图,其翼长不同,且沿平面内主方向在不同高度处有挫折。根据意大利地震规范设计了十二个基础隔震的测试结构,其中考虑了(除了重力载荷之外)水平地震载荷单独作用或与垂直地震载荷共同作用。对于FP轴承,假定曲率半径的三个设计值和动快速摩擦系数的平面分布中的两个设计值,从所有隔离器的恒定值到每个隔离器的不同值不等。 FP轴承的非线性力-位移规律是在水平方向上考虑的,具体取决于滑动速度和轴向载荷,而间隙模型考虑了FP轴承的垂直升力。非线性地震分析是对具有明显水平或垂直分量的近断层地震动进行的,并根据测试结构所采用的设计假设进行选择和归一化。 (C)2016 Elsevier Ltd.保留所有权利。

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