Risk Assessment of Highway Bridges Under Multi-hazard Effect of Flood-induced Scour and Earthquake

Risk Assessment of Highway Bridges Under Multi-hazard Effect of Flood-induced Scour and Earthquake
Author: Taner Yilmaz
Publisher:
Total Pages:
Release: 2015
Genre:
ISBN:

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Natural disasters may have significant impact on the functionality of highway transportation systems resulting in unacceptable socio-economic losses. Flood and earthquake hazards can be considered as two most significant natural threats to safety of bridges. The overarching need for safety and serviceability of critical transportation infrastructure system requires highway bridges to be analyzed and designed not only for discrete hazard events, but also for possible multiple-hazard (or multi-hazard) conditions. For a highway network spanning over a seismically-active flood-prone region, the occurrence of earthquakes in the presence of flood-induced scour is a possible multi-hazard scenario for bridges in the network. The varied dynamic characteristics of a bridge due to the occurrence of scour may affect the response of the bridge under earthquake loading, and eventually may increase the risk of bridge failure.Despite the rising concern of research communities on this topic, the issues related to the multi-hazard effect of flood-induced scour and earthquake on highway bridges have not been satisfactorily answered. In addition, no guideline is currently available in design codes to ensure seismic safety of bridges with potentially scoured foundations. This dissertation aims to improve a comprehensive knowledge-base on risk and reliability analyses of highway bridges subjected to this multi-hazard by developing a multi-hazard risk assessment framework for bridges and quantifying variability in multi-hazard fragility and risk of bridges through a thorough uncertainty analysis. Outcome of this research provides research communities and government agencies a better understanding of the multi-hazard effect of flood-induced scour and earthquake on the risk and reliability of highway bridges. It also serves as a foundation for future researches on developing strategic plans for repair or retrofit prioritization for highway bridges under similar multi-hazard conditions.

Multi-Hazard Assessment of Seismic and Scour Effects on Rural Bridges with Unknown Foundations

Multi-Hazard Assessment of Seismic and Scour Effects on Rural Bridges with Unknown Foundations
Author: ZhiQiang Chen
Publisher:
Total Pages: 0
Release: 2022
Genre: Electronic books
ISBN:

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This chapter proposes a probabilistic framework for assessing seismic and scour effects on existing river-crossing bridge structures. The emphasis is on bridge structures in rural areas, for which it has been recognized that a large number of rural bridges have unknown foundation types and further are subject to both flooding-induced scour and seismic damage. With a review of the US-based rural bridges, this chapter presents a probabilistic framework for bridge performance assessment. Using a representative rural bridge model, the fragility results for the bridge reveal that scour tends to be beneficial in reducing structural damage at slight to moderate seismic intensities and to be detrimental in increasing collapse potential at high-level intensities. The demand hazard curves further quantify probabilistically the occurrence of local damage and global collapse, and systematically reveal the complex effects of scour as a hydraulic hazard on bridge structures.

Seismic Vulnerability Analysis of Scoured Bridge Systems

Seismic Vulnerability Analysis of Scoured Bridge Systems
Author: Xuan Guo
Publisher:
Total Pages: 255
Release: 2014
Genre: Bridges
ISBN:

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Bridges are a vital infrastructure component of the transportation networks in both rural and urban areas. Damaged or destroyed bridges can affect the reliability and resilience of transportation networks that are critical to human life, economical activities, and the social sustainability at large. Understanding how natural hazards affect the life-cycle performance of bridge systems will lead to improved preparedness prior to extreme disasters and benefit the society ultimately. Among many natural events, flood-induced foundation scour has been recognized as a leading cause of bridge failure in the United States. The distinct feature of flood-induced scour is that it may last during the rest of bridge's service life once it is formed around a bridge foundation. Intuitively, the threat may be potentially more severe if the permanent scour is combined with other hazards, such as earthquakes. However, the combined effects of such multiple hazards are not clearly understood to date. It is thus meaningful to investigate the effects of multi-hazard earthquake and scour on the seismic performance of river-crossing bridges. The general objective of this dissertation is to assess the seismic vulnerability of bridge structures considering flooding-induced scour in a general multi-hazard context. To meet this objective, five related research problems are defined in this dissertation. Correspondingly, scientific answers and technical solution frameworks are developed in this dissertation. The dissertation directly contributes to the multi-hazard assessment methodology with an emphasis in flood-induced scour and earthquake hazards. Specifically, the dissertation directly resolves the practical challenge of evaluating the effects of bridge scour on the seismic performance of river-crossing bridges in terms of theoretical frameworks, numerical procedures, and case study-based findings. Future research directions along the line of multi-hazard bridge performance research with an emphasis of hydro- and seismic-impacts are pointed at the end of the dissertation.

Multi-hazard Resilience Assessment of River-crossing Bridges

Multi-hazard Resilience Assessment of River-crossing Bridges
Author: Mostafa Badroddin
Publisher:
Total Pages: 234
Release: 2020
Genre: Bridges
ISBN:

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Bridge structures are required to possess high reliability and robustness against the concurrent effect of extreme loads and environmental attacks. To achieve such interrelated goals, it is necessary to assess the system performance and resilience subjected to multi-hazard impacts and the beneficial effects of any retrofitting or hazard-countermeasure in a lifecycle context. The damaged bridge needs to be restored rapidly over its service life due to the significant economic losses and disruption to transportation networks. For river-crossing bridges, one of the essential hazard mitigation strategies is scour countermeasures. However, a quantitative understanding of the effects of SCs on bridge system resilience is not found. This dissertation presents a critical synthesis of the existing literature that provides relevant knowledge and a profound understanding of probabilistic multi-hazard assessment for bridge structures. Then, a finite element-based probabilistic framework is designed to assess the lifecycle resilience of reinforced concrete river-crossing bridges under seismic, flood-induced scour, and chloride-induced corrosion impacts, including the consideration of a typical scour countermeasure at variable service times. Based on the general performance-based approach, two probabilistic models are formulated, termed the mean-scour fragility analysis (MS-FA) model and the total-scour demand hazard analysis (TS-DHA) model, which produce straightforward functional curves and can be readily used to evaluate the seismic-scour multi-hazard effects. An integrated damage index is defined based on both local and system-level ductility demands to develop a demand hazard model and to estimate the damage-based residual functionality and recovery duration to quantify the lifecycle bridge resilience. Notably, the exceeding probability approach is designed to reveal how progressive and sudden hazards interact and result in resilience degradation and how scour countermeasures contribute to resilience enhancement. The outcomes of the numerical experiment reveal the positive and distinct effects of implementing SCs at different lifecycle intervals. More importantly, resilience time-series demonstrate arbitrary multi-modes and nonparametric patterns. Accordingly, a robust statistical distance-based approach is presented to determine the sequential evolution of time-varying multi-hazard resilience. The proposed framework would assist stakeholders and decision-makers in resilience patterns recognition, assessing the effectiveness of hazard mitigation strategies, and taking short- and long-term proactive intervention actions by specifying resilience thresholds.

Safety, Reliability, Risk and Life-Cycle Performance of Structures and Infrastructures

Safety, Reliability, Risk and Life-Cycle Performance of Structures and Infrastructures
Author: George Deodatis
Publisher: CRC Press
Total Pages: 1112
Release: 2014-02-10
Genre: Technology & Engineering
ISBN: 1315884887

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Safety, Reliability, Risk and Life-Cycle Performance of Structures and Infrastructures contains the plenary lectures and papers presented at the 11th International Conference on STRUCTURAL SAFETY AND RELIABILITY (ICOSSAR2013, New York, NY, USA, 16-20 June 2013), and covers major aspects of safety, reliability, risk and life-cycle performance of str

Life-cycle Performance Assessment of Highway Bridges Under Multi-hazard Conditions and Environmental Stressors

Life-cycle Performance Assessment of Highway Bridges Under Multi-hazard Conditions and Environmental Stressors
Author: Azadeh Alipour
Publisher:
Total Pages: 230
Release: 2010
Genre:
ISBN: 9781124013893

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Civil infrastructure systems such as highway transportation networks are tied up, directly or indirectly, with every country's economy in a major way. The state of nation's civil infrastructure has also significant impacts on the safety and quality of living. Among various infrastructure components, the highway bridges play a key role in a transportation network and huge money is spent every year to ensure their functionality. Over the time, highway bridges are aging, rapidly deteriorating, and becoming increasingly vulnerable to the catastrophic failure during probable natural or man-made hazards. In this study, the performance of reinforced concrete highway bridges, which form the majority of existing bridges in California, is evaluated during earthquake events while they have been continuously exposed to environmental stressors, such as attack of chloride ions. To assess the global structural degradation due to the deterioration mechanisms, an inventory of representative bridges of California with different structural attributes are studied. The extent of capacity loss is calculated using a finite difference procedure and the results are then utilized to find the life-cycle cost of bridges. The effects of deterioration processes on the functionality of the entire transportation network are also studied through the case-study analysis of the Los Angeles and Orange County highway transportation network. The change in the most important parameters associated with the network performance, such as total travel time, drivers delay, and traffic capacity, are thoroughly investigated following various bridge type-age scenarios. The inspection and maintenance costs of the whole system are then estimated using a multi-hazard framework to minimize the system costs while ensuring its safety.

Design of Highway Bridges for Extreme Events

Design of Highway Bridges for Extreme Events
Author: Michel Ghosn
Publisher: Transportation Research Board
Total Pages: 183
Release: 2003
Genre: Bridges
ISBN: 0309087503

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Chapter 1. Introduction -- Chapter 2. Reliability models for combinations of extreme events -- Chapter 3. Calibration of load factors for combinations of extreme events -- Chapter 4. Conclusions and future research -- References -- Glossary of notations -- Appendixes.

Hydro-Environmental Analysis

Hydro-Environmental Analysis
Author: James L. Martin
Publisher: CRC Press
Total Pages: 5742
Release: 2013-12-04
Genre: Science
ISBN: 1138000868

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Focusing on fundamental principles, Hydro-Environmental Analysis: Freshwater Environments presents in-depth information about freshwater environments and how they are influenced by regulation. It provides a holistic approach, exploring the factors that impact water quality and quantity, and the regulations, policy and management methods that are necessary to maintain this vital resource. It offers a historical viewpoint as well as an overview and foundation of the physical, chemical, and biological characteristics affecting the management of freshwater environments. The book concentrates on broad and general concepts, providing an interdisciplinary foundation. The author covers the methods of measurement and classification; chemical, physical, and biological characteristics; indicators of ecological health; and management and restoration. He also considers common indicators of environmental health; characteristics and operations of regulatory control structures; applicable laws and regulations; and restoration methods. The text delves into rivers and streams in the first half and lakes and reservoirs in the second half. Each section centers on the characteristics of those systems and methods of classification, and then moves on to discuss the physical, chemical, and biological characteristics of each. In the section on lakes and reservoirs, it examines the characteristics and operations of regulatory structures, and presents the methods commonly used to assess the environmental health or integrity of these water bodies. It also introduces considerations for restoration, and presents two unique aquatic environments: wetlands and reservoir tailwaters. Written from an engineering perspective, the book is an ideal introduction to the aquatic and limnological sciences for students of environmental science, as well as students of environmental engineering. It also serves as a reference for engineers and scientists involved in the management, regulation, or restoration of freshwater environments.

Bridge Maintenance, Safety, Management, Life-Cycle Sustainability and Innovations

Bridge Maintenance, Safety, Management, Life-Cycle Sustainability and Innovations
Author: Hiroshi Yokota
Publisher: CRC Press
Total Pages: 926
Release: 2021-04-20
Genre: Technology & Engineering
ISBN: 1000173755

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Bridge Maintenance, Safety, Management, Life-Cycle Sustainability and Innovations contains lectures and papers presented at the Tenth International Conference on Bridge Maintenance, Safety and Management (IABMAS 2020), held in Sapporo, Hokkaido, Japan, April 11–15, 2021. This volume consists of a book of extended abstracts and a USB card containing the full papers of 571 contributions presented at IABMAS 2020, including the T.Y. Lin Lecture, 9 Keynote Lectures, and 561 technical papers from 40 countries. The contributions presented at IABMAS 2020 deal with the state of the art as well as emerging concepts and innovative applications related to the main aspects of maintenance, safety, management, life-cycle sustainability and technological innovations of bridges. Major topics include: advanced bridge design, construction and maintenance approaches, safety, reliability and risk evaluation, life-cycle management, life-cycle sustainability, standardization, analytical models, bridge management systems, service life prediction, maintenance and management strategies, structural health monitoring, non-destructive testing and field testing, safety, resilience, robustness and redundancy, durability enhancement, repair and rehabilitation, fatigue and corrosion, extreme loads, and application of information and computer technology and artificial intelligence for bridges, among others. This volume provides both an up-to-date overview of the field of bridge engineering and significant contributions to the process of making more rational decisions on maintenance, safety, management, life-cycle sustainability and technological innovations of bridges for the purpose of enhancing the welfare of society. The Editors hope that these Proceedings will serve as a valuable reference to all concerned with bridge structure and infrastructure systems, including engineers, researchers, academics and students from all areas of bridge engineering.