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Retrofitting of vulnerable RC structures by base isolation technique

机译:通过基础隔离技术改造易受伤害的RC结构

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The scale and nature of the recent earthquakes in the world and the related earthquake disaster index coerce the concerned community to become anxious about it. Therefore, it is crucial that seismic lateral load effect will be appropriately considered in structural design. Application of seismic isolation system stands as a consistent alternative against this hazard. The objective of the study is to evaluate the structural and economic feasibility of reinforced concrete (RC) buildings with base isolation located in medium risk seismic region. Linear and nonlinear dynamic analyses as well as linear static analysis under site-specific bi-directional seismic excitation have been carried out for both fixed based (FB) and base isolated (BI) buildings in the present study. The superstructure and base of buildings are modeled in a 3D finite element model by consistent mass approach having six degrees of freedom at each node. The floor slabs are simulated as rigid diaphragms. Lead rubber bearing (LRB) and High damping rubber bearing (HDRB) are used as isolation device. Change of structural behaviors and savings in construction costing are evaluated. The study shows that for low to medium rise buildings, isolators can reduce muscular amount of base shears, base moments and floor accelerations for building at soft to medium stiff soil. Allowable higher horizontal displacement induces structural flexibility. Though incorporating isolator increases the outlay, overall structural cost may be reduced. The application of base isolation system confirms a potential to be used as a viable solution in economic building design.
机译:世界上最近地震的规模和性质以及相关的地震灾害指数迫使有关社区对此感到担忧。因此,至关重要的是在结构设计中应适当考虑地震侧向荷载效应。地震隔离系统的应用是抵御这种危险的一种一致选择。这项研究的目的是评估位于中等风险地震区的基础隔离钢筋混凝土(RC)建筑物的结构和经济可行性。在本研究中,已经针对固定基础(FB)和基础隔离(BI)建筑物进行了针对特定地点的双向地震激励的线性和非线性动态分析以及线性静态分析。通过在每个节点处具有六个自由度的一致质量方法,在3D有限元模型中对建筑物的上部结构和基础进行建模。楼板被模拟为刚性隔板。铅橡胶轴承(LRB)和高阻尼橡胶轴承(HDRB)用作隔离装置。评估结构行为的变化和建筑成本的节省。研究表明,对于中低层建筑,隔离器可以减少在软至中硬土条件下建筑物的基础剪力,基础弯矩和地面加速度的增加。允许的更高的水平位移会引起结构的灵活性。尽管并入隔离器会增加支出,但总体结构成本可能会降低。基础隔离系统的应用证实了在经济建筑设计中可以用作可行解决方案的潜力。

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