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Multi-storey structures with compound seismic isolation

机译:具有复合地震隔离的多层结构

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Seismic isolation, one of the most innovative technologies in the area of performance-based design of buildings, has been increasingly used in the last 15 years worldwide. Seismic isolation is principally based on the incorporation of flexible isolators at the base of a building in order to shift its fundamental period outside the dangerous for the resonance range of periods. In extending the concept of base isolation, the present contribution refers to the control of multistorey structures under earthquake actions by means of introducing seismic isolation at different elevations of the structure. Thus, the structural response is influenced decisively by the vertically distributed seismic isolation, which at the respective storey-levels is alone capable of controlling the partial and overall stiffness, the force transmission and the energy dissipation process of the respective dynamic adaptable system. During moderate earthquakes the seismic isolated structure acts as an absorber of the kinetic energy at the isolation levels, thus minimizing the displacements of the building. During strong earthquakes the effectiveness of the system in further enlarging the period of the building, compared to the classical method of seismic isolation at a unique level, is achieved, most often with decreased inter-storey deflections, and without introducing extensive displacements at the building base, which are often limited by practical constraints. The effectiveness of the proposed control system is investigated in parametric studies, in the time-history range, for a six-storey building under ten earthquakes of the Greek-Mediterranean region. The most effective vertical distribution of seismic isolation at various storey-levels is proposed, based on a multi-criteria analysis of the responses of the isolated systems.
机译:地震隔离是基于绩效的建筑物设计领域最具创新性的技术之一,越来越多地在全球过去15年中使用。地震隔离主要基于建筑物底部掺入柔性隔离器,以便将其基本时期转移到危险范围内的危险范围。在扩展基本隔离的概念时,本贡献是指通过在结构的不同凸起下引入地震隔离来控制地震作用下的多体结构。因此,结构响应是由垂直分布的地震隔离落实影响的,其在各个层次的水平上独立地能够控制各个动态适应性系统的部分和总刚度,力传递和能量耗散过程。在中地地震期间,地震隔离结构充当隔离水平的动能的吸收器,从而最小化建筑物的位移。在强大地震过程中,系统在进一步扩大建筑物时期的效力,与独特水平的地震隔离的经典方法相比,大多数情况下,最常见的偏转偏转,而不会在建筑物上引入广泛的位移基础,通常受实际限制的限制。拟议的控制系统的有效性在参数学研究中,在时间历史范围内,为希腊地中海地区十大地震下的六层建筑。基于对隔离系统的响应的多标准分析,提出了各种层次水平在各种楼层水平的最有效垂直分布。

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