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基于挠度影响矩阵的吊架损伤识别

Identification of hanger damage based on deflection influence matrix.

作者信息

Wang Weiwei, Chen Weili, Xu Hongbin

机构信息

Department of Road and Bridge Engineering, Hebei Jiaotong Vocational and Technical College, Shijiazhuang, 050091, Hebei, China.

Hebei Provincial Seasonal Frozen Area Highway Service Safety and Early Warning Technology Innovation Center, Shijiazhuang, 050091, Hebei, China.

出版信息

Heliyon. 2024 Aug 17;10(17):e36476. doi: 10.1016/j.heliyon.2024.e36476. eCollection 2024 Sep 15.

Abstract

Tied-arch bridges, a vital component of modern infrastructure, are susceptible to various forms of damage, particularly hangers. The detection and identification of such damages are crucial for maintaining structural integrity and safety. However, traditional methods face challenges in terms of accuracy and efficiency. This study aims to develop a refined method for hanger damage identification in tied-arch bridges, to address the limitations of existing techniques. By focusing on deflection changes at the anchoring points between the hangers and tie beams, we sought to enhance the precision of damage detection. We propose an innovative approach based on the concept of influence lines, introducing the 'generalized deflection difference influence line'and the 'deflection difference influence matrix'. Then proposed a new identification index for identifying the damaged hanger after matrix. An actual tied-arch bridge was used to validate the proposed approach. A detailed three-dimensional finite element model of the bridge was developed and calibrated using dynamic and static response data. Thirty different hanger-damage conditions were simulated to evaluate the effectiveness of the proposed method. Our findings reveal that the deflection difference influence matrix offers more detailed and comprehensive information on bridge distribution points than traditional methods. Our method proved effective in identifying hanger damage, irrespective of its location on the bridge. In additionally, the identification efficiency of the method can be improved by adjusting the magnitude of the applied load, with larger loads amplifying the detectability of damage. This study highlights the potential of the deflection difference influence matrix to revolutionize hanger damage identification for tied-arch bridges. Its adaptability, accuracy, and efficiency are significant advancements over existing methods. This study successfully demonstrates an innovative and reliable method for hanger damage identification.

摘要

系杆拱桥作为现代基础设施的重要组成部分,容易受到各种形式的损坏,尤其是吊杆。检测和识别此类损坏对于维持结构完整性和安全性至关重要。然而,传统方法在准确性和效率方面面临挑战。本研究旨在开发一种用于系杆拱桥吊杆损伤识别的改进方法,以解决现有技术的局限性。通过关注吊杆与系梁锚固点处的挠度变化,我们力求提高损伤检测的精度。我们基于影响线的概念提出了一种创新方法,引入了“广义挠度差影响线”和“挠度差影响矩阵”。然后提出了一种新的识别指标,用于在矩阵运算后识别受损吊杆。使用一座实际的系杆拱桥来验证所提出的方法。利用动态和静态响应数据开发并校准了该桥详细的三维有限元模型。模拟了30种不同的吊杆损伤情况,以评估所提方法的有效性。我们的研究结果表明,与传统方法相比,挠度差影响矩阵能提供关于桥梁分布点更详细、更全面的信息。我们的方法被证明在识别吊杆损伤方面是有效的,无论其在桥上的位置如何。此外,通过调整施加荷载的大小可以提高该方法的识别效率,较大的荷载会增强损伤的可检测性。本研究突出了挠度差影响矩阵在革新系杆拱桥吊杆损伤识别方面的潜力。其适应性、准确性和效率相较于现有方法有显著进步。本研究成功展示了一种用于吊杆损伤识别的创新且可靠的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/469b/11399667/1126b343bd2a/gr1.jpg

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