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Seismic Behaviour Of Asymmetric Base Isolated Structures With Various Distributions Of Isolators

机译:隔震器分布不同的非对称基础隔震结构的抗震性能

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The paper tries to contribute to a better understanding of the behaviour of base isolated asymmetric structures. Numerous variants of originally symmetric four storey RC frame building isolated by a simple lead rubber bearing base isolation system with various distributions of isolators were considered as test examples. The symmetrical structural variant and appropriate LRB bearing properties were designed according to Eurocode 2 and 8. The asymmetric variants were produced by shifting the centre of mass CM toward one side of the building. Additional "torsionally unrestrained" and "torsionally restrained" sub-variants of each building variant were obtained by changing the mass distribution, while total mass sum remained unchanged. For the base isolation system we have considered six different distributions of bearings characterized by the position of the centre of isolators CI in respect to the centre of mass CM of the superstructure. Two symmetric (Uniform and Peripheral distribution) and four asymmetric distributions of isolators (called CI = CM, CI = CM/2, CI = -CM/2 and CI = -CM) were included in the analyses. The paper analyses the positive and negative effects of different bearing distributions to the displacements and rotations of the superstructure as well as to the base isolation system and tries to determine the most favourable distribution of isolators that is able to balance the effects of introduced eccentricities. The results obtained by 3D nonlinear dynamic analyses are presented as an average of maximums for ten selected ground motions and three different scalings. They indicate that all six considered distributions of bearings, however differently, substantially reduce the unfavourable torsional effects, which are with different extent transferred from the superstructure to the base isolation system. It was further observed that CI = CM distribution, favoured by common building codes, is best only for accommodating the torsional effects in the base isolation system. A significantly different conclusion was found observing the nonlinear behaviour of the superstructure, where CI = CM distribution might cause more damage in the flexible side frames.
机译:本文试图有助于更好地理解基础隔离的不对称结构的行为。通过简单的铅橡胶轴承基础隔离系统(具有各种隔离器分布)隔离的本来对称的四层RC框架建筑的众多变体被视为测试示例。根据欧洲规范2和8设计了对称的结构变型和适当的LRB承载特性。通过将质心CM移向建筑物的一侧来产生不对称的变型。通过更改质量分布,可以获得每个建筑变体的其他“不受扭转约束”和“受扭转约束”子变体,而总质量总和保持不变。对于基础隔离系统,我们考虑了六个不同的轴承分布,这些分布的特征是隔离器CI的中心相对于上层建筑的质心CM的位置。分析中包括两个对称(均匀分布和外围分布)和四个不对称分布的隔离器(称为CI = CM,CI = CM / 2,CI = -CM / 2和CI = -CM)。本文分析了不同的轴承分布对上部结构的位移和旋转以及对基础隔振系统的正反作用,并试图确定能够平衡引入的偏心影响的最佳隔振器分布。通过3D非线性动力学分析获得的结果表示为十种选定地面运动和三种不同比例的最大值的平均值。他们指出,轴承的所有六个考虑的分布,无论如何不同,都大大减少了不利的扭转效应,这些扭转效应从上部结构到基础隔离系统的传递程度不同。进一步观察到,受通用建筑规范青睐的CI = CM分布仅最能适应基础隔震系统中的扭转效应。在观察上部结构的非线性行为时发现了一个截然不同的结论,其中CI = CM分布可能会在柔性侧架中造成更多损坏。

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