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Optimal placement of friction dampers in building considering nonlinearity of soil

机译:考虑土壤非线性的建筑物中摩擦阻尼器的最佳放置

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摘要

It is well known fact that, supplemental damping is one of the best way to improve the performance of building during seismic event. Out of many supplemental damping devices, friction dampers are widely used as they are easier to install and independent of temperature like viscous dampers. Generally, these devices are designed assuming fixed base conditions. Even for achieving optimal number and location of friction dampers, fixed base conditions are assumed. But, when the soil-structure interaction is considered in analysis, degradation in the capacity of structure is observed. Hence, in this paper a methodology is proposed for optimal placement of friction dampers considering nonlinear soil-foundation system. The numerical study on G + 6 storey building is done to evaluate the efficiency of proposed methodology with the use of 4, 8 and 12 friction dampers. For optimization, performance objectives based on maximum base shear, top floor displacement and energy dissipation are used. From the study, it is seen that proposed approach yields targeted performance, even with less number of friction dampers when the nonlinearity of soil is considered.
机译:众所周知,补充阻尼是改善地震事件期间改善建筑物性能的最佳方式之一。在许多补充阻尼装置中,摩擦阻尼器被广泛使用,因为它们更容易安装和独立于粘性阻尼器。通常,这些设备被设计在假设固定基础条件。即使为了实现摩擦阻尼器的最佳数量和位置,也假设固定基础条件。但是,当在分析中考虑土壤结构相互作用时,观察到结构能力的降解。因此,在本文中,提出了一种用于考虑非线性土基础系统的摩擦阻尼器的最佳放置方法。对G + 6层建设的数值研究进行了评价使用4,8和12摩擦阻尼器的提出方法的效率。为了优化,使用基于最大基础剪切,顶层位移和能量耗散的性能目标。从研究来看,可以看出,当考虑土壤的非线性时,所提出的方法产生了靶向性能,即使在土壤的非线性时,即使在较少的摩擦阻尼器中。

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