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An enhanced base isolation system equipped with optimal tuned mass damper inerter (TMDI)

机译:增强的基础隔离系统,配备了最佳调谐质量阻尼器惰轮(TMDI)

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In seismic base isolation, most of the earthquake-induced displacement demand is concentrated at the isolation level, thereby the base-isolation system undergoes large displacements. In an attempt to reduce such displacement demand, this paper proposes an enhanced base-isolation system incorporating the inerter, a 2-terminal flywheel device whose generated force is proportional to the relative acceleration between its terminals. The inerter acts as an additional, apparent mass that can be even 200 times higher than its physical mass. When the inerter is installed in series with spring and damper elements, a lower-mass and more effective alternative to the traditional tuned mass damper (TMD) is obtained, ie, the TMD inerter (TMDI), wherein the device inertance plays the role of the TMD mass. By attaching a TMDI to the isolation floor, it is demonstrated that the displacement demand of base-isolated structures can be significantly reduced. Due to the stochastic nature of earthquake ground motions, optimal parameters of the TMDI are found based on a probabilistic framework. Different optimization procedures are scrutinized. The effectiveness of the optimal TMDI parameters is assessed via time history analyses of base-isolated multistory buildings under several earthquake excitations; a sensitivity analysis is also performed. The enhanced base-isolation system equipped with optimal TMDI attains an excellent level of vibration reduction as compared to the conventional base-isolation scheme, in terms not only of displacement demand of the base-isolation system but also of response of the isolated superstructure (eg, base shear and interstory drifts); moreover, the proposed vibration control strategy does not imply excessive stroke of the TMDI.
机译:在地震基础隔离中,大多数地震引起的位移需求集中在隔离级别,因此基础隔离系统经历了大位移。为了减少这种位移需求,本文提出了一种增强的基础隔离系统,该系统结合了惯性装置,即两端子飞轮装置,其产生的力与其端子之间的相对加速度成比例。惰杆是附加的视在质量,甚至可能比其物理质量高200倍。当惰轮与弹簧和减振器元件串联安装时,可以获得质量更小,更有效的替代传统调谐质量阻尼器(TMD)的产品,即TMD惰轮(TMDI),其中装置惯性起到了以下作用: TMD质量。通过将TMDI连接到隔离地板上,可以证明可以显着降低基础隔离结构的位移需求。由于地震地面运动的随机性,基于概率框架找到了TMDI的最佳参数。审查不同的优化程序。通过多次地震激发下的基础隔震多层建筑的时程分析,评估了最佳TMDI参数的有效性。还进行了灵敏度分析。与传统的基础隔震方案相比,配备有最佳TMDI的增强型基础隔震系统不仅具有出色的减振效果,而且不仅具有基础隔震系统的位移需求,而且还具有隔离式上部结构的响应(例如, ,基础剪力和层间位移);此外,所提出的振动控制策略并不意味着TMDI的行程过大。

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