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首页> 外文期刊>Mechanics Based Design of Structures and Machines >Nonlinear dynamic behavior of base-isolated buildings with the friction pendulum system subjected to near-fault earthquakes
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Nonlinear dynamic behavior of base-isolated buildings with the friction pendulum system subjected to near-fault earthquakes

机译:近地震近地震摩擦摆系统的基层建筑物的非线性动力学行为

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In spite of the fact that avant-garde sliding bearings have been proposed, the application of the single friction pendulum (FP) bearing is increasing due to its conceptual simplicity; yet there are still important aspects of its behaviour that need further attention. More specifically, the FP system presents spatial variation of friction coecient, depending on the sliding velocity of the FP bearings. Moreover, the frictional force and restoring stiffness during the sliding phase are proportional to the axial load. Long duration intense velocity pulses in the horizontal direction and high values of the ratio between vertical and horizontal peak ground acceleration are expected for near-fault earthquakes. Torsion with residual displacement and uplift of the FP system need to be better understood for base-isolated structures located in near-fault areas. To this end, a numerical investigation is carried out with reference to 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 main in-plan 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 for the FP system and two in-plan distributions of dynamic-fast friction coecient for the FP bearings, ranging from a constant value for all isolators to a different value for each, are assumed. A nonlinear force-displacement law of the FP bearings in the horizontal direction, depending on sliding velocity and axial load, is considered, while a gap model takes into account the vertical uplift of the FP bearings. The nonlinear seismic analysis is performed on two sets of seven near-fault earthquakes, both sets with significant horizontal or vertical components selected and normalized on the basis of the design hypotheses adopted for the test structure.
机译:尽管已经提出了前卫滑动轴承,但由于其概念性简单,单摩擦摆(FP)轴承的应用正在增加;然而,它的行为仍然存在进一步关注的重要方面。更具体地,FP系统根据FP轴承的滑动速度呈现摩擦相当的空间变化。此外,滑动相期间的摩擦力和恢复刚度与轴向载荷成比例。近断层地震预期垂直和水平峰值接地加速度之间的水平方向和高值的长持续时间强度脉冲。对于近故障区域的基部隔离结构,需要更好地理解与FP系统的残余位移和隆起的扭转。为此,参考六层钢筋混凝土(R.C.)框架建筑进行了数值研究,其特征在于,具有不同长度的翅膀的L形计划,沿着主要方向方向的不同高度的挫折。 12个碱基隔离的测试结构与意大利地震代码一致设计,考虑(除了重力载荷之外)水平地震载荷单独或与垂直形式组合起来。假设从所有隔离器的恒定值与每个隔离器的恒定值范围为每个隔离器的恒定曲率半径的三个设计值。考虑了根据滑动速度和轴向载荷的水平方向上的FP轴承的非线性力 - 位移规律,而间隙模型考虑了FP轴承的垂直隆起。非线性地震分析是在两组近故障地震上进行的,两组都是基于测试结构采用的设计假设的显着水平或垂直部件的组件。

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