新型整体桥台桥梁的抗震性能

B. Briseghella, Fuyun Huang, G. Fiorentino
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引用次数: 1

摘要

由于轴承和伸缩缝的耐久性问题,整体式桥台桥梁(IABs)变得相当普遍。甲板和子结构之间的整体连接一方面增加了结构冗余,降低了维护成本。然而,从另一方面来看,由于热变化、长期效应(蠕变和收缩)和地震等动力荷载引起的桥台与回填体之间以及桩与土之间的相互作用,也引入了土-结构效应。一些学者从理论和实验两方面对土-结构相互作用进行了研究,但目前还缺乏统一的指导方针和规范。本文在综述了国内外关于混凝土混凝土结构地震反应的主要研究成果的基础上,介绍了近年来研究人员在这一领域的一些研究成果。本文主要讨论以下课题:(a)创新桥面与桥墩/桥台接合的实验研究;(b)在内墙内使用预应力混凝土或超高性能桩的可能性;(c)以预孔填充阻尼材料为基础的桩隔震技术;(d)由欧盟在Horizon 2020 SERA项目中支持的一项关于新型整体桥台桥梁地震性能的研究项目。本文清楚地展示了所提出的技术在地震带建造的iab中的潜在应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SEISMIC BEHAVIOUR OF NOVEL INTEGRAL ABUTMENT BRIDGES
Integral abutment bridges (IABs) are becoming rather common due to the durability problems of bearings and expansion joints. Monolithic connections between the deck and sub-structure allow, on one side, to increase the structure redundancy and reduce the maintenance costs. However, from the other side, soil-structure effects are also introduced due to the interactions between the abutment and the backfill and between the pile and soil induced by thermal variations, long-term effects (creep and shrinkage) and dynamic loads, such as earthquakes. Several authors have investigated the soil-structure interaction for IABs both theoretically and experimentally, but there is still a lack of common line guidelines and codes. After a literature review of the main studies regarding the seismic response of IABs, this paper introduces some recent contributions given by investigators in this field. In particular, the following topics are discussed: (a) an experimental study on an innovative deck to pier/abutment joint; (b) the possibility of using prestressed concrete or ultra-high performance piles in IABs; (c) a pile isolation technique based on a pre-hole filled with damping materials; and (d) a research project supported by European Union inside the Horizon 2020 SERA project on the seismic behaviour of novel integral abutment bridges. The paper clearly demonstrates the potential applications of the proposed technologies for IABs built in seismic zones.
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