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Seismic base isolation by nonlinear mode localization

机译:非线性模式定位的地震基础隔离

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In this paper, the performance of a nonlinear base-isolation system, comprised of a nonlinearly sprung subfoundation tuned in a 1:1 internal resonance to a flexible mode of the linear primary structure to be isolated, is examined. The application of nonlinear localization to seismic isolation distinguishes this study from other base-isolation studies in the literature. Under the condition of third-order smooth stiffness nonlinearity, it is shown that a localized nonlinear normal mode (NNM) is induced in the system, which confines energy to the subfoundation and away from the primary or main structure. This is followed by a numerical analysis wherein the smooth nonlinearity is replaced by clearance nonlinearity, and the system is excited by ground motions representing near-field seismic events. The performance of the nonlinear system is compared with that of the corresponding linear system through simulation, and the sensitivity of the isolation system to several design parameters is analyzed. These simulations confirm the existence of the localized NNM, and show that the introduction of simple clearance nonlinearity significantly reduces the seismic energy transmitted to the main structure, resulting in significant attenuation in the response.
机译:在本文中,研究了非线性基础隔离系统的性能,该系统包括以1:1内部共振调谐到要隔离的线性主结构的柔性模式的非线性弹性子基础。非线性定位在地震隔离中的应用使该研究与文献中的其他基础隔离研究区分开来。研究表明,在三阶光滑刚度非线性的条件下,系统中产生了局部非线性正态模态(NNM),将能量限制在子基础上并远离主结构或主结构。然后进行数值分析,其中用游隙非线性代替平滑的非线性,并用代表近场地震事件的地震动来激励系统。通过仿真比较了非线性系统和相应线性系统的性能,并分析了隔离系统对多个设计参数的敏感性。这些模拟证实了局部NNM的存在,并表明简单的间隙非线性的引入显着降低了传递到主体结构的地震能量,从而导致响应的明显衰减。

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