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Overview of Earthquake Resisting System Design and Retrofit Strategy for Bridges in Illinois

机译:伊利诺伊州桥梁抗震系统设计与改造策略概述

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摘要

An overview of an earthquake resisting system (ERS) strategy for the design and retrofit of bridges in Illinois is presented in the paper. Initial development of this ERS strategy by the Illinois Dept. of Transportation (IDOT) began in mid-2005. It was initially implemented in late 2006 and revised in late 2007 to reflect increased design accelerations adopted into the American Association of State Highway and Transportation Official's bridge design code and a new seismic bridge design guide specification in mid-2007. The primary objective of IDOT's ERS strategy is to prevent span loss. This is achieved through three levels or tiers of seismic structural redundancy, which allow for certain levels of damage at planned locations in bridges. Controlled damage at strategic locations in structures allows for the mitigation of seismic energy. Sacrificial or fuse-like connections between superstructures and substructures, conservative beam support lengths, and plastic hinging at planned locations in substructures are the primary areas of focus for Levels 1-3 of seismic structural redundancy, respectively, in Illinois' developed ERS strategy.
机译:本文概述了用于伊利诺伊州桥梁设计和改造的抗震系统(ERS)策略。伊利诺斯州交通运输部(IDOT)初步开发了这种ERS战略。它最初于2006年末实施,并于2007年末进行了修订,以反映出美国国家公路和运输官员协会桥梁设计规范和新的抗震桥梁设计指南规范在2007年中期采用了越来越多的设计加速。 IDOT ERS策略的主要目标是防止跨度丢失。这是通过三级或三级地震结构冗余来实现的,这些冗余允许在桥梁的计划位置进行一定程度的破坏。结构中关键位置的受控损坏可以减轻地震能量。伊利诺伊州已开发的ERS策略中,上部结构与子结构之间的牺牲性或类熔丝连接,保守的梁支撑长度以及子结构中计划位置的塑性铰分别是1-3级地震结构冗余的重点领域。

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