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首页> 外文期刊>Soil Dynamics and Earthquake Engineering >Scenario based seismic re-qualification of caisson supported major bridges - A case study of Saraighat Bridge
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Scenario based seismic re-qualification of caisson supported major bridges - A case study of Saraighat Bridge

机译:沉箱支撑大型桥梁的基于场景的地震再鉴定-以萨拉格哈特大桥为例

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摘要

Many major river bridges were constructed in highly active seismic areas of India much before the seismic code development. Bridges are lifelines infrastructure and as a result, it is necessary to requalify/reasses these structures in the light of the new and improved understanding of seismic resistant design philosophies. The aim of the paper is to develop a simplified methodology to carry out scenario based seismic requalification of major river bridges supported on caisson foundations (also known as Well Foundation). An example problem of Saraighat Bridge located in highly active Himalayan seismic zone is considered to demonstrate the application of the methodology. Field investigation and advanced laboratory tests on soil samples from the bridge site were carried out. The test results reveal that the soil is susceptible to liquefaction and as a result, soil structure interaction analyses are carried out. It is shown that good performance of these type of bridges depend on the displacement response of the pier head so as not to cause unseating of the decks. It is concluded, owing to the large stiffness of the foundations, bridges supported on caisson foundations may not be adversely affected by liquefaction induced effects.
机译:在制定地震法规之前,许多大型河桥是在印度活跃度较高的地震地区建造的。桥梁是生命线的基础设施,因此,有必要根据对抗震设计理念的新的和更好的理解来重新鉴定/重新评估这些结构。本文的目的是开发一种简化的方法,对基于沉箱基础(也称为井基础)的主要河道桥进行基于场景的地震再鉴定。考虑了位于喜马拉雅高地震带的Saraighat桥的示例问题,以证明该方法的应用。对桥梁现场的土壤样品进行了现场调查和高级实验室测试。试验结果表明,土壤易于液化,因此进行了土壤结构相互作用分析。结果表明,这类桥梁的良好性能取决于墩头的位移响应,从而不会引起甲板的固定。结论是,由于基础的刚度大,液化引起的影响可能不会对沉箱基础上支撑的桥梁产生不利影响。

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