Global flood hazard : applications in modeling, mapping and forecasting

Global Flood Hazard Subject Category Winner, PROSE Awards 2019, Earth Science Selected from more than 500 entries, demonstrating exceptional scholarship and making a significant contribution to the field of study. PROSE Award Finalist 2019 Association of American Publishers Award for Professional an...

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Main Authors Schumann, Guy J-P., Bates, Paul D., Apel, Heiko, Aronica, Giuseppe T.
Format eBook Book
LanguageEnglish
Published Hoboken, New Jersey Wiley 2018
American Geophysical Union
Edition1
SeriesGeophysical monograph series
Subjects
Online AccessGet full text
ISBN1119217865
9781119217862
DOI10.1002/9781119217886

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Abstract Global Flood Hazard Subject Category Winner, PROSE Awards 2019, Earth Science Selected from more than 500 entries, demonstrating exceptional scholarship and making a significant contribution to the field of study. PROSE Award Finalist 2019 Association of American Publishers Award for Professional and Scholarly Excellence Flooding is a costly natural disaster in terms of damage to land, property and infrastructure. This volume describes the latest tools and technologies for modeling, mapping, and predicting large-scale flood risk. It also presents readers with a range of remote sensing data sets successfully used for predicting and mapping floods at different scales. These resources can enable policymakers, public planners, and developers to plan for, and respond to, flooding with greater accuracy and effectiveness. Describes the latest large-scale modeling approaches, including hydrological models, 2-D flood inundation models, and global flood forecasting models Showcases new tools and technologies such as Aqueduct, a new web-based tool used for global assessment and projection of future flood risk under climate change scenarios Features case studies describing best-practice uses of modeling techniques, tools, and technologies Global Flood Hazard is an indispensable resource for researchers, consultants, practitioners, and policy makers dealing with flood risk, flood disaster response, flood management, and flood mitigation.
AbstractList Global Flood Hazard Flooding is a costly natural disaster in terms of damage to land, property and infrastructure. This volume describes the latest tools and technologies for modeling, mapping, and predicting large-scale flood risk. It also presents readers with a range of remote sensing data sets successfully used for predicting and mapping floods at different scales. These resources can enable policymakers, public planners, and developers to plan for, and respond to, flooding with greater accuracy and effectiveness. Describes the latest large-scale modeling approaches, including hydrological models, 2-D flood inundation models, and global flood forecasting models Showcases new tools and technologies such as Aqueduct, a new web-based tool used for global assessment and projection of future flood risk under climate change scenarios Features case studies describing best-practice uses of modeling techniques, tools, and technologies Global Flood Hazard is an indispensable resource for researchers, consultants, practitioners, and policy makers dealing with flood risk, flood disaster response, flood management, and flood mitigation.
Global Flood Hazard Subject Category Winner, PROSE Awards 2019, Earth Science Selected from more than 500 entries, demonstrating exceptional scholarship and making a significant contribution to the field of study. PROSE Award Finalist 2019 Association of American Publishers Award for Professional and Scholarly Excellence Flooding is a costly natural disaster in terms of damage to land, property and infrastructure. This volume describes the latest tools and technologies for modeling, mapping, and predicting large-scale flood risk. It also presents readers with a range of remote sensing data sets successfully used for predicting and mapping floods at different scales. These resources can enable policymakers, public planners, and developers to plan for, and respond to, flooding with greater accuracy and effectiveness. Describes the latest large-scale modeling approaches, including hydrological models, 2-D flood inundation models, and global flood forecasting models Showcases new tools and technologies such as Aqueduct, a new web-based tool used for global assessment and projection of future flood risk under climate change scenarios Features case studies describing best-practice uses of modeling techniques, tools, and technologies Global Flood Hazard is an indispensable resource for researchers, consultants, practitioners, and policy makers dealing with flood risk, flood disaster response, flood management, and flood mitigation.
Author Aronica, Giuseppe T.
Apel, Heiko
Schumann, Guy J-P.
Bates, Paul D.
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Notes This Work is a co-publication of the American Geophysical Union and John Wiley and Sons, Inc.
Includes bibliographical references and index
OCLC 1039888127
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Snippet Global Flood Hazard Subject Category Winner, PROSE Awards 2019, Earth Science Selected from more than 500 entries, demonstrating exceptional scholarship and...
Global Flood Hazard Flooding is a costly natural disaster in terms of damage to land, property and infrastructure. This volume describes the latest tools and...
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SubjectTerms Flood control
Flood damage prevention
Flood forecasting
Floodplains-Monitoring
Floods
Floods -- Mathematical models
TableOfContents Intro -- Title Page -- Copyright Page -- Contents -- Contributors -- Preface -- Chapter 1 The Need for Mapping, Modeling, and Predicting Flood Hazard and Risk at the Global Scale -- 1.1. INTRODUCTION -- 1.2. BRIEF OVERVIEW OF RECENT ADVANCES IN GLOBAL FLOOD HAZARD AND RISK MODELING -- 1.3. GLOBAL FLOOD RISK INFORMATION IN HIGH‐LEVEL DISASTER RISK MANAGEMENT ADVOCACY -- 1.4. APPLICATIONS FOR INTERNATIONAL DEVELOPMENT ORGANIZATIONS -- 1.5. APPLICATIONS FOR THE REINSURANCE INDUSTRY -- 1.6. APPLICATIONS FOR GLOBAL FLOOD FORECASTING AND EARLY WARNING -- 1.7. COMMUNICATING GLOBAL FLOOD RISK: THE AQUEDUCT GLOBAL FLOOD ANALYZER -- 1.8. THE WAY FORWARD -- REFERENCES -- Part I: Flood Hazard Mapping and Modeling from Remote Sensing -- Chapter 2 Rainfall Information for Global Flood Modeling -- 2.1. INTRODUCTION -- 2.2. ROLE OF RAINFALL IN LARGE‐SCALE FLOOD MODELING -- 2.3. GENERAL CONSIDERATIONS AND REQUIREMENTS -- 2.4. PRECIPITATION INFORMATION SOURCES -- 2.5. FUTURE DIRECTIONS -- 2.6. CONCLUSIONS -- ACKNOWLEDGMENTS -- REFERENCES -- Chapter 3 Flood Risk Mapping From Orbital Remote Sensing -- 3.1. INTRODUCTION -- 3.2. MICROWAVE RADIOMETRY FOR MEASURING RIVER DISCHARGE -- 3.3. PRODUCTION OF SIGNAL/DISCHARGE RATING CURVES -- 3.4. ASSESSING RIVER WATCH ACCURACY -- 3.5. SATELLITE GAUGING SITE SELECTION -- 3.6. FLOOD MAPPING FROM OPTICAL SATELLITES -- 3.7. REMOTE SENSING‐BASED FLOOD HAZARD QUANTIFICATION -- 3.8. CONCLUSION -- REFERENCES -- Chapter 4 Flood Mapping Using Synthetic Aperture Radar Sensors From Local to Global Scales -- 4.1. INTRODUCTION -- 4.2. PRINCIPLES OF SAR: IMPLICATIONS FOR FLOOD MAPPING -- 4.3. COMMON SAR‐BASED FLOOD MAPPING METHODS -- 4.4. IMAGE INTERPRETATION: CHALLENGES AND SOLUTIONS -- 4.5. REPRESENTATION OF UNCERTAINTIES -- 4.6. CASE STUDIES -- 4.7. SUMMARY AND PERSPECTIVES -- ACKNOWLEDGMENTS -- REFERENCES
Chapter 11 Global Flood Risk Modeling and Projections of Climate Change Impacts -- 11.1. INTRODUCTION -- 11.2. GLOBAL RIVER HYDRODYNAMIC MODEL FOR FLOOD RISK ASSESSMENT -- 11.3. GLOBAL FLOOD RISK ASSESSMENT UNDER CLIMATE CHANGE -- 11.4. SUMMARY AND DISCUSSIONS -- ACKNOWLEDGMENTS -- REFERENCES -- Chapter 12 Global Flood Forecasting for Averting Disasters Worldwide -- 12.1. INTRODUCTION -- 12.2. ORIGINS OF GLOBAL FLOOD FORECASTING -- 12.3. CURRENT STATUS OF LARGE‐SCALE FLOOD FORECASTING -- 12.4. RESEARCH ON IMPROVING QUALITY AND USABILITY OF HYDROLOGICAL FORECASTS -- 12.5. USING GLOBAL FLOOD FORECASTS FOR HUMANITARIAN PREPAREDNESS AND EARLY ACTION -- 12.6. FUTURE CHALLENGES AND OPPORTUNITIES OF GLOBAL FLOOD FORECASTING -- 12.7. CONCLUSIONS -- ACKNOWLEDGMENTS -- REFERENCES -- Chapter 13 Data Assimilation and River Hydrodynamic Modeling Over Large Scales -- 13.1. INTRODUCTION -- 13.2. DATA ASSIMILATION -- 13.3. EXAMPLES OF ESTIMATING FLOOD VARIABLES -- 13.4. CHALLENGES AND OPPORTUNITIES -- ACKNOWLEDGMENTS -- REFERENCES -- Chapter 14 Global Flood Hazard Mapping, Modeling, and Forecasting: Challenges and Perspectives -- 14.1. CURRENT STATUS -- 14.2. CHALLENGES AND PERSPECTIVES -- 14.3. SUMMARY AND OUTLOOK -- REFERENCES -- Index -- EULA
Chapter 5 Flood Hazard Mapping in Data-Scarce Areas: An Application Example of Regional Versus Physically Based Approaches for Design Flood Estimation -- 5.1. INTRODUCTION -- 5.2. STUDY SITE -- 5.3. METHODOLOGY -- 5.4. RESULTS -- 5.5. DISCUSSION -- 5.6. CONCLUSIONS -- ACKNOWLEDGMENTS -- REFERENCES -- Chapter 6 Global Flood Monitoring Using Satellite Precipitation and Hydrological Modeling -- 6.1. INTRODUCTION -- 6.2. GLOBAL FLOOD MONITORING SYSTEM (GFMS) -- 6.3. EVALUATION OF THE DRIVE MODEL AND THE GFMS -- 6.4. A TYPICAL EXAMPLE OF REAL‐TIME FLOOD DETECTION AND INUNDATION MAPPING BY THE GFM -- 6.5. ONGOING AND FUTURE WORK -- 6.6. SUMMARY AND CONCLUSIONS -- REFERENCEs -- Chapter 7 Flood Hazard Mapping for the Humanitarian Sector: An Opinion Piece on Needs and Views -- 7.1. INTRODUCTION -- 7.2. BACKGROUND INTERFERENCE ISSUES -- 7.3. THE PROCESS -- 7.4. CONCLUSION -- REFERENCES -- Part II: Flood Hazard Modeling and Forecasting -- Chapter 8 Modeling and Mapping of Global Flood Hazard Layers -- 8.1. INTRODUCTION -- 8.2. FLOOD MODELING DEVELOPMENTS AT THE GLOBAL SCALE -- 8.3. CURRENT GLOBAL MODELS -- 8.4. APPLICATIONS -- 8.5. OUTLOOK -- 8.6. CONCLUSIONS -- REFERENCES -- Chapter 9 Estimating Change in Flooding for the 21st Century Under a Conservative RCP Forcing: A Global Hydrological Modeling Assessment -- 9.1. INTRODUCTION -- 9.2. METHOD -- 9.3. RESULTS -- 9.4. DISCUSSION -- 9.5. CONCLUSIONS -- ACKNOWLEDGMENTS -- REFERENCES -- Chapter 10 From Precipitation to Damage: A Coupled Model Chain for Spatially Coherent, Large-Scale Flood Risk Assessment -- 10.1. INTRODUCTION -- 10.2. MODEL CHAIN -- 10.3. APPLICATION OF RFM TO THE ELBE RIVER BASIN AND MULDE CATCHMENT -- 10.4. POSSIBILITIES FOR EXTENDING RFM TO THE CONTINENTAL SCALE -- 10.5. CONCLUSIONS -- ACKNOWLEDGMENTS -- REFERENCES
Title Global flood hazard : applications in modeling, mapping and forecasting
URI https://cir.nii.ac.jp/crid/1130282270949434752
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