基于可靠性的多次地震损伤累积框架:以桥梁为例

IF 2.7 Q2 CONSTRUCTION & BUILDING TECHNOLOGY Infrastructures Pub Date : 2023-06-20 DOI:10.3390/infrastructures8060106
Nilupa Herath, Lihai Zhang, Priyan Mendis, Satheeskumar Navaratnam, Weena Lokuge, Sujeeva Setunge
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引用次数: 0

摘要

多次地震作用下的损伤累积对桥梁的剩余使用寿命有重要影响。开发了一个基于可靠性的框架来制定桥梁维修活动的决策。框架的特征可以量化由于多次地震和逐渐恶化的影响而导致桥梁失效的时间依赖概率。为了估计桥梁系统的可靠度,使用了桥梁的失效概率。两个案例研究被用来演示如何将该方法应用于现实世界。结果表明,多次地震的累积破坏和逐渐劣化对桥梁的剩余使用寿命影响较大。此外,土壤条件对桥梁的逐渐劣化和使用寿命的降低起主要作用。总体而言,拟议的框架使桥梁维护活动的可持续决策过程成为可能。结果表明,在桥梁维护系统中纳入综合影响的必要性,并且与仅由地震荷载引起的影响相比,考虑的案例研究桥梁由于逐渐恶化和地震影响的综合影响而导致的破坏概率增加了40%以上。
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A Reliability-Based Framework for Damage Accumulation Due to Multiple Earthquakes: A Case Study on Bridges
Damage accumulation due to multiple seismic impacts over time has a significant effect on the residual service life of the bridge. A reliability-based framework was developed to make decisions in bridge maintenance activities. The feature of the framework enables quantifying the time-dependent probability of failure of bridges due to the impact of multiple earthquakes and progressive deterioration. To estimate the reliability of the bridge systems, the probability of failure of the bridge was used. Two case studies were utilised to demonstrate how the method can be applied to the real world. Results show that the accumulated damage caused by multiple earthquakes and progressive deterioration significantly impact the remaining useful life of the bridge. Furthermore, the soil conditions predominantly influence the progressive deterioration and reduce the service life of the bridge. Overall, the proposed framework enables the sustainable decision-making process for bridge maintenance activities. The results reveal the necessity of including the combined impact in the bridge maintenance system and that there is a more than 40% increase in the probability of failure, due to the combined effect of progressive deterioration and earthquake impacts, compared to the impact only due to seismic loads for the considered case study bridge.
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来源期刊
Infrastructures
Infrastructures Engineering-Building and Construction
CiteScore
5.20
自引率
7.70%
发文量
145
审稿时长
11 weeks
期刊最新文献
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