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Development and Application of Thought of Balance between Force and Displacement in Seismic Isolation Design of Bridges Subjected to Near-Fault Ground Motions

机译:近断层地震作用下桥梁隔震设计中力与位移平衡思想的发展与应用

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With the enhancement of the consciousness of sustainable development of society, seismic isolation design is getting more and more attention. Although seismic isolation technology has been developed for more than a century, the research on its core concept especially when the structure is subjected to near-fault ground motions is not yet available. In this paper, based on the philosophical thought of "unity of the opposites", by analyzing the seismic damages of bridges, seismic fortification standards and the method for seismic response analysis, the principal contradiction that the existence and development between force and displacement is established, which is the key point of seismic isolation design of bridges under near-fault ground motions. A series of seismic isolated bridge systems and isolation devices such as cable-sliding friction aseismic bearings, high-performance isolation rubber bearings (HIRBs) and cable-sliding modular expansion joints (CMEJs) are proposed, which are widely used in the practical engineering.
机译:随着社会可持续发展意识的增强,隔震设计越来越受到人们的重视。尽管地震隔离技术已经发展了一个多世纪,但尚无关于其核心概念的研究,尤其是在结构遭受近断层地震动的情况下。本文基于“对立统一”的哲学思想,通过分析桥梁的地震破坏,地震设防标准和地震响应分析方法,建立了力与位移之间存在与发展的主要矛盾。 ,是近断层地震动下桥梁隔震设计的关键。提出了一系列地震隔离桥梁系统和隔离装置,例如电缆滑动摩擦抗震轴承,高性能隔离橡胶轴承(HIRB)和电缆滑动模块化伸缩缝(CMEJ),这些在实际工程中得到了广泛的应用。

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