Resilience of bridge networks considering the escalation of natural disasters due to global warming

项目来源

日本学术振兴会基金(JSPS)

项目主持人

秋山 充良

项目受资助机构

早稲田大学

立项年度

2023

立项时间

未公开

项目编号

23H00217

研究期限

未知 / 未知

项目级别

国家级

受资助金额

46670000.00日元

学科

社会システム工学、安全工学、防災工学およびその関連分野

学科代码

未公开

基金类别

基盤研究(A)

关键词

地球温暖化 ; レジリエンス ; 道路ネットワーク ; 海面上昇 ; 洪水 ;

参与者

山田朋人;本田利器;松崎裕;石橋寛樹;高橋良和

参与机构

北海道大学;東京大学;防衛大学校;日本大学;京都大学

项目标书摘要:Outline of Research at the Start:気候変動予測には,極めて大きな不確定性を伴い,さらにそれが非定常性を有しながら増大する問題に対して,社会・経済活動の根幹を支える橋梁・道路ネットワークの安全性とレジリエンスを確保する方策を検討する.本研究では,地球温暖化による荷重・作用の激甚化のうち,特に,海面上昇による津波ハザード強度の増加,異常降雨による河川内橋梁への流体力と洗掘深の増加,を想定し,ライフサイクルにわたる橋梁の破壊可能性,および個別構造物の損壊が道路ネットワークの接続性に及ぼす影響について検討する。

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  • 1.Probabilistic service life assessment of corroded concrete structures: a state-of-the-art review

    • 关键词:
    • Bayesian updating; corroded concrete structures; finite elementanalysis; life-cycle performance assessment; machine learning; MonteCarlo simulation; random field simulation; structural safety andreliability;TIME-DEPENDENT RELIABILITY; REINFORCED-CONCRETE; RC STRUCTURES; SPATIALVARIABILITY; PITTING CORROSION; NONUNIFORM CORROSION;MECHANICAL-BEHAVIOR; CYCLE RELIABILITY; CRACK-PROPAGATION; REBARCORROSION

    Predicting the performance and remaining service life of deteriorated reinforced concrete (RC) structures based on observational information obtained through methods such as visual inspection and monitoring remains a significant challenge within the structural engineering community. Experimental studies on the process of steel corrosion and its subsequent impact on the structural performance and integrity of deteriorated RC structures have demonstrated the need for improved numerical simulation techniques to accurately replicate observed phenomena. Addressing this complex task requires the integration of various advanced technologies and a proper account of the uncertainties involved in estimating and evaluating each stage of structural deterioration and its progression in both space and time. This paper provides a state-of-the-art review of the methods and technologies applied in the probabilistic remaining service life assessment of corroded concrete structures. These include: (a) corrosion detection methods, (b) experimental investigation and finite element (FE) analysis of the structural performance of corroded concrete components, (c) probabilistic time-dependent reliability assessment using stochastic simulation methods, and (d) Bayesian updating and machine learning techniques. This review aims to highlight the current status and obstacles of these methods and technologies in assessing the remaining service life of corrosion-affected concrete structures.

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