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Seismic Damage of and Seismic Rehabilitation Techniques for Railway Reinforced Concrete Structures

机译:铁路钢筋混凝土结构的地震破坏与修复技术。

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摘要

The Miyagi Prefecture Earthquake in 1978 was the first earthquake to cause serious damage to railway concrete structures in Japan. This was followed by the South Hyogo Prefecture Earthquake in 1995, which caused shear failure of columns of RC viaducts carrying the Shinkansen (Bullet Train) and old railroad lines predating the 1983 seismic design standard. As the result of various concrete structures sustaining extensive damage never experienced before, the seismic design standard was greatly revised, and the seismic rehabilitation of existing structures was started on a full scale. Basic concept of seismic rehabilitation is to prevent shear failure of columns that led to the collapse of RC viaducts and bridges catastrophically occurred in whole structural frame during the past large earthquakes. To enhance the seismic capacity of the whole structural frame, increase in ductility of each column through seismic rehabilitation capable of absorbing seismic energy is needed.rnAs the space under many railway viaducts is used by stations and shops, negotiations regarding the relocation of businesses, the removal of large obstacles such as heavy machinery, and the development of valid seismic rehabilitation methods to reinforce a large number of massive columns were called for. At present, we are trying to enhance seismic capacity as much as possible for new structures in order to prevent serious damage and enable early restoration.
机译:1978年的宫城县地震是日本第一起严重破坏铁路混凝土结构的地震。随后是1995年的兵库县南部地震,该地震导致承载新干线(子弹头列车)和早于1983年地震设计标准的旧铁路线的RC高架桥的立柱剪切破坏。由于各种混凝土结构遭受了前所未有的广泛破坏,抗震设计标准得到了极大的修订,现有结构的抗震修复工作已全面启动。地震修复的基本概念是防止在过去的大地震中导致整个结构框架中发生灾难性事故的RC高架桥和桥梁坍塌的圆柱体的剪切破坏。为了提高整个结构框架的抗震能力,需要通过能够吸收地震能量的地震修复来提高每根柱的延性。随着车站和商店使用许多铁路高架桥下面的空间,有关企业搬迁的谈判,需要消除大型障碍物,例如重型机械,并开发有效的地震修复方法来加固大量的大型圆柱。目前,我们正在努力尽可能提高新结构的抗震能力,以防止严重破坏并能够尽早恢复。

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