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Seismic Assessment of RC Arch Bridge: A Case of 2015 Gorkha Earthquake

机译:RC Arch Bridge的地震评估:案例为2015年Gorkha地震

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Nepal Himalayas is one of the most seismic vulnerable zones. The active tectonic action impels the assessment of structures in possible seismic hazards including the bridge structures. This paper presents the impact of the 2015 Gorkha earthquake on the existing reinforced concrete arch bridge at Chobhar, Nepal. A three-dimensional model of the bridge is constructed using Open Sees platform. Nonlinear pushover analysis was performed to find the displacement capacity of the bridge. Ground motion from the main shock of the 2015 Gorkha earthquake is used in this study. Nonlinear time history analysis is performed with three orthogonal ground motions applied in the transverse, longitudinal and vertical direction of the bridge. The study investigates the safety of the bridge scaling up the ground motion to potential PGA in Nepal Himalayas; the result demonstrated the necessity of retrofit to ensure the safety level. Moreover, the horizontal seismic force obtained from the time history analysis is compared with the force obtained from the design code of the bridge. Also, the design force as per the present code (revised code) is presented.
机译:尼泊尔喜马拉雅山是最震荡的脆弱区之一。主动构造作用促进了在可能的地震危险中的结构评估,包括桥梁结​​构。本文介绍了2015年Gorkha地震对尼泊尔Chobhar现有钢筋混凝土拱桥的影响。使用Open Sees平台构建桥的三维模型。进行非线性推送分析以找到桥梁的位移能力。本研究中使用了来自2015年Gorkha地震的主要震荡的地面行动。在桥梁的横向,纵向和垂直方向上施加的三个正交地运动进行非线性时间历史分析。该研究调查了桥梁将地面运动扩大到尼泊尔喜马拉雅山的潜在PGA的安全性;结果证明了确保安全水平的改造。此外,将从时间历史分析中获得的水平地震力与从桥梁的设计代码获得的力进行比较。此外,呈现了根据本代码(修订代码)的设计力。

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