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Modern Developments in Flood Modelling

Modern Developments in Flood Modelling

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Floods are one of the most common natural hazards that substantially affect human lives and properties globally. Engineering is of key importance to cope with flood risk as it provides integrated solutions associated with hydrological–hydraulic and coastal-advanced techniques for analysing flooding risk, for designing flood infrastructures for direct protection, for providing natural retention measures that enhance environmental and river restoration, for developing flood warning systems, and for presenting integrated construction and non-construction measures in order to adapt to emerging climatic challenges and develop resilience under the modern city environment.This Special Issue highlights the current efforts being made to advance the science and applications in flood engineering and, more specifically, in a wide spectrum of its related geosciences, such as hydrology, hydraulics, sedimentation, and river restoration.

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Keywords

  • Bernstein estimator
  • beta kernel estimator
  • coastal flooding
  • compound flooding
  • D-vine copula
  • Dams
  • default urban fraction
  • DEM errors
  • DEM sensitivity
  • design rainfall
  • digital elevation model
  • Eastern Uganda
  • ensemble empirical mode decomposition (EEMD)
  • Environmental science, engineering & technology
  • extreme rainfall
  • flood exposure
  • flood extent
  • flood hazard maps
  • flood maps
  • flood mitigation
  • flood modeling
  • flood period
  • flood plains
  • flood risk assessment
  • forensic hydrology
  • geospatial analysis
  • HEC-HMS
  • HEC-RAS
  • History of engineering & technology
  • hydraulic simulation
  • Ianos
  • Infrastructure
  • intensity–duration–frequency curves
  • inundation maps
  • Kampala
  • Karditsa
  • kernel density estimation
  • LSTM neural network
  • Machine learning
  • Manning coefficient
  • Medicane
  • MIKE FLOOD
  • n/a
  • nature-based solutions
  • numerical modelling
  • Numerical simulations
  • ombrian curves
  • open dataset
  • open-access data
  • parametric copulas
  • physical modeling
  • rainfall extremes
  • random forests
  • raster grid
  • regional frequency analysis
  • Regionalization
  • Remote sensing
  • return period
  • return periods
  • sea level elevation
  • Sentinel
  • sewer model
  • spatial rainfall
  • storm surge
  • SWAT
  • Technology, engineering, agriculture
  • Technology: general issues
  • tidal river
  • tidal watersheds
  • trivariate joint analysis
  • UAV mapping
  • updated urban fraction
  • urban parameter
  • urban sewer flooding
  • water level forecasting
  • water management
  • Wetlands
  • WRF model

Links

DOI: 10.3390/books978-3-0365-7808-8

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