Flood risk influenced by the compound effect of storm surge and rainfall under climate change for low-lying coastal areas.
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Summary
An integrated framework is proposed to determine the range of compound flood risk without the requirement of joint probability analysis between storm surge and rainfall and can be applied in other low-lying coastal areas to quantify the potential impacts on human and environment caused by compound flooding under climate change.
- Type
- article
- Published
- 2020-12-24
- Cited by
- 136
- References
- 66
- Access
- Open access
- OpenAlex
- https://openalex.org/W3116347945
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:230106624
Keywords
Storm surge, Flooding (psychology), Coastal flood, Flood myth, Environmental science
References
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- Joint Probability Analysis of Extreme Precipitation and Storm Tide in a Coastal City under Changing Environment
- Hydrologic Implications of Dynamical and Statistical Approaches to Downscaling Climate Model Outputs
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- Climate change impact on flood hazard, vulnerability and risk of the Long Xuyen Quadrangle in the Mekong Delta
Cited by
- Improvement of Flood Risk Analysis Via Downscaling of Hazard and Vulnerability Maps
- The use of unmanned aerial vehicles for forecasting and preventing floods
- A methodology for the assessment of compound sea level and rainfall impact on urban drainage networks in a coastal city under climate change
- Migrating rivers, consequent paleochannels: The unlikely partners and hotspots of flooding.
- Compound Hydrometeorological Extremes: Drivers, Mechanisms and Methods
- Assessing tropical cyclone compound flood risk using hydrodynamic modelling: a case study in Haikou City, China
- Farmers’ Capacity and Rice Productivity in Climate Change Adaptation in Central Lampung Regency, Indonesia
- Integrated hydrodynamic and machine learning models for compound flooding prediction in a data-scarce estuarine delta
- Flood risk estimation under the compound influence of rainfall and tide
- A Novel Framework for Parametric Analysis of Coastal Transition Zone Modeling
- Sea Level Rise Impact on Compound Coastal River Flood Risk in Klaipėda City (Baltic Coast, Lithuania)
- Spatiotemporal Dependence of Soil Moisture and Precipitation over India
- Quantifying the Effects of Sea Level Rise on Estuarine Drainage Systems
- Exploring the contribution of climate change policies to integrated coastal zone management in Brazil
- Experimental study on the interaction of solitary wave with elastic submerged plate
- Amplification of Flood Risks by the Compound Effects of Precipitation and Storm Tides Under the Nonstationary Scenario in the Coastal City of Haikou, China
- Flood mapping based on the combination of support vector regression and Heun’s scheme
- Analytical solutions for the dynamic analysis of a modular floating structure for urban expansion
- Integrating resilience into an urban flood risk assessment framework: a case study of the Minzhi region, Shenzhen City
- Impact of Tides and Surges on Fluvial Floods in Coastal Regions
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