1st Edition

Modelling Human-Flood Interactions
A Coupled Flood-Agent-Institution Modelling Framework for Long-Term Flood Risk Management

  • Available for pre-order. Item will ship after January 20, 2021
ISBN 9780367748869
January 20, 2021 Forthcoming by CRC Press
164 Pages

USD $79.95

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Book Description

The negative impacts of floods are attributed to the extent and magnitude of a flood hazard, and the vulnerability and exposure of natural and human elements. In flood risk management (FRM) studies, it is crucial to model the interaction between human and flood subsystems across multiple spatial, temporal and organizational scales. Models should address the heterogeneity that exists within the human subsystem, and incorporate institutions that shape the behaviour of individuals. Hence, the main objectives of the dissertation are to develop a modelling framework and a methodology to build holistic models for FRM, and to assess how coupled human-flood interaction models support FRM policy analysis and decision-making. To achieve the objectives, the study introduces the Coupled fLood-Agent-Institution Modelling framework (CLAIM). CLAIM integrates actors, institutions, the urban environment, hydrologic and hydrodynamic processes and external factors, which affect FRM activities. The framework draws on the complex system perspective and conceptualizes the interaction of floods, humans and their environment as drivers of flood hazard, vulnerability and exposure. The human and flood subsystems are modelled using agent-based models and hydrodynamic models, respectively. The two models are dynamically coupled to understand human-flood interactions and to investigate the effect of institutions on FRM policy analysis.

Table of Contents

1 Introduction
1.1 Motivation
1.2 Human-flood interactions
1.3 Systems perspective and sociohydrology
1.4 Research gaps in human-flood interaction modelling
1.5 Research aim and questions
1.6 Research approach
1.7 Scope
1.8 Outline

2 Theoretical Background
2.1 Introduction
2.2 Flood risk management: A complex adaptive system perspective
2.3 Flood modelling
2.4 Agent-based modelling
2.5 Institutional analysis
2.6 Integrated modelling
2.7 Conclusion

3 CLAIM: a coupled flood-agent-institution modelling framework
3.1 Introduction
3.2 Framework description
3.3 Building models using CLAIM
3.4 Conclusion

4 Effects of formal and informal institutions on flood risk management: The case of Sint Maarten
4.1 Introduction
4.2 Study area
4.3 Model setups
4.4 Results
4.5 Discussion and conclusion

5 The role of household adaptation measures to reduce vulnerability to flooding: The case of Hamburg, Germany
5.1 Introduction
5.2 Study area
5.3 Protection motivation theory
5.4 Model setups
5.5 Results
5.6 Discussion and conclusion

6 Insights into conceptualizing and modelling human-flood interactions
6.1 Introduction
6.2 CLAIM and modelling methodology
6.3 Conceptualization and model development in case studies
6.4 Socio-hydrologic modelling and FRM studies

7 Reflections and outlook
7.1 Research outputs
7.2 Reflections
7.3 Outlook

Appendix A List of assumptions — Coupled ABM-flood model for Sint Maarten
Appendix B List of assumptions — Coupled ABM-flood model for Wilhelmsburg
Appendix C List of house types in Wilhelmsburg

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Yared Abayneh Abebe is a PhD researcher in Urban Water Systems at IHE Delft Institute for Water Education, Delft, The Netherlands. He received his BSc in Soil and Water Engineering and Management from Haramaya University, Ethiopia and his MSc in Water Science and Engineering, specialization Hydroinformatics from IHE Delft. His research interests include policy analysis, the use of agent-based and hydrodynamic models, and hazard, exposure, vulnerability and risk assessments in disaster risk management, with a particular focus on hydro-meteorological hazards such as floods and hurricanes.