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Adaptive Negative Stiffness Device based nonconventional Tuned Mass Damper for seismic vibration control of tall buildings

机译:基于自适应负刚度装置的非常规调谐质量阻尼器用于高层建筑的地震振动控制

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Adaptive Negative Stiffness Device (ANSD) has been developed recently for passive vibration control of structures. ANSD emulates negative stiffness behavior (by exerting force toward the direction of motion) to a structure, so that, the combined structure-ANSD system shows smooth elasto-plastic force-deformation behavior with virtual yielding at target ("engaging") displacement. The device has been studied analytically and its behavior has been demonstrated experimentally in simply supported bridge model and in Single Degree of Freedom (SDOF) structure considering limited input excitations. However, efficient and cost-effective exploitation of true potential of ANSD deserves further studies. With this being the eventual goal, in this study, we explore the performances of ANSD in seismic vibration control of a tall building by implementing a nonconventional Tuned Mass Damper (TMD) with drift control. In absence of a methodology for choice of ANSD parameters in literature, reported till date, we employ a tuning criteria for nonconventional TMD, on which the drift control is imposed as a constraint, given the special significance of drifts in tall buildings. The criteria of tuning and drift control are shown to be mutually conflicting and an algorithm is presented to address the same. Simplifying assumptions are made to develop the tuning criteria in presence of nonlinearity in ANSD and P - delta nonlinearity in tall building. A Reduced Order Modeling (ROM) approach for the building-ANSD system is developed to facilitate the algorithmic computations. Robustness of our design approach is shown under an acceptable level of detuning of TMD and near fault pulse type motions. Comparative assessment with a conventional design approach is presented to show the improvements. A step by step illustration of the developed methodology is briefly touched on in context of modem performance based approach. The study is a first step toward the possible utility of ANSD in controlling seismic vulnerability of tall buildings.
机译:自适应负刚度装置(ANSD)最近被开发用于结构的被动振动控制。 ANSD模拟结构的负刚度行为(通过向运动方向施加力),因此,组合结构-ANSD系统显示出平滑的弹塑性力-变形行为,并在目标(“接合”)位移处产生虚拟屈服。已经对该设备进行了分析研究,并在考虑了有限输入激励的简单支撑桥模型和单自由度(SDOF)结构中通过实验证明了其性能。但是,对ANSD真正潜力的有效和具有成本效益的开发值得进一步研究。以此为最终目标,在本研究中,我们将通过实现具有漂移控制功能的非常规调谐质量阻尼器(TMD),探索ANSD在高层建筑地震振动控制中的性能。在迄今为止尚未报道的文献中,在没有选择ANSD参数的方法学的情况下,我们考虑到非常规TMD的调整标准,鉴于高层建筑中的漂移具有特殊意义,因此对漂移进行控制是一种约束。调整和漂移控制的标准被证明是相互矛盾的,并提出了解决该问题的算法。在存在ANSD非线性和高层建筑P-delta非线性的情况下,做出简化假设以制定调整标准。建立了建筑物ANSD系统的降阶建模(ROM)方法,以简化算法计算。在可接受的TMD失谐水平和接近故障脉冲型运动的情况下,表明了我们设计方法的稳健性。提出了使用常规设计方法的比较评估,以显示改进。在基于调制解调器性能的方法的上下文中简要地介绍了所开发方法的分步说明。这项研究是ANSD可能用于控制高层建筑地震脆弱性的第一步。

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