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Multi-Damage Identification of Multi-Span Bridges Based on Influence Lines

机译:基于影响线的多跨度桥梁的多损伤识别

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The framework security of a bridge is essential as a critical component of traffic engineering. Even though the bridge structure is damaged to various degrees due to various reasons, the bridge will be wrecked when the damage reaches a particular level, suggesting a negative influence on people’s lives. Based on the current situation and existing problems of structural damage identification of bridges, a structural damage identification technology of continuous beam bridges based on deflection influence lines is proposed in this paper in order to keep track of and always detect broken bridge elements, thereby extending the bridge’s service life and reducing the risk of catastrophic accidents. The line function expression of deflection impact on a multi-span continuous beam bridge was first obtained using Graphic Multiplication theory. From the theoretical level, the influence line function of the continuous beam bridge without extensive damage was computed, and a graph was generated. The photographs of the DIL as well as the first and second derivatives, the deflection influence line distinction and its first and second derivatives, and the DIL distinction and its first and second derivatives of a continuous beam bridge in a single position and multi-position destruction were fitted in this paper. Finally, after comparing multiple work conditions and multiple measuring points, it was found that the first derivative of deflection influence line difference had the best damage identification effect. The design was completed and tested, which had verified the feasibility of this theory.
机译:桥梁的框架安全性是交通工程的关键组成部分。尽管由于各种原因,桥梁结构因各种度损坏而言,当损坏达到特定水平时,桥将被击毁,这表明对人们的生活产生负面影响。基于目前的情况和桥梁结构损伤识别存在的问题,本文提出了一种基于偏转影响线的连续梁桥的结构损伤识别技术,以跟踪并始终检测破碎的桥接元件,从而延长桥梁的使用寿命并降低灾难性事故的风险。首先使用图形乘法理论获得对多跨度连续光束桥的偏转冲击的线路功能表达。从理论水平来看,计算了连续梁桥的影响线功能,没有损坏,并产生图。 DIX的照片以及第一和第二衍生物,偏转影响线区别和其第一和第二衍生物,以及在单个位置和多位置破坏中连续梁桥的折叠区别和第一和第二衍生物本文安装了。最后,在比较多个工作条件和多个测量点之后,发现偏转影响线差的第一个衍生物具有最佳的损害识别效果。该设计已完成并进行测试,已验证了该理论的可行性。

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