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Advances in Large Scale Flood Monitoring and Detection
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Climate change and land use transformations have induced an increased flood risk worldwide. These phenomena are dramatically impacting ordinary life and the economy. Research and technology offer a new strategy to quantify and predict such phenomena and also mitigate the impact of flooding. In particular, the growing computational power is offering new strategies for a more detailed description of the flooding over large scales. This book offers an overview of the most recent outcomes of the research on this argument.

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Keywords

  • 2D hydraulic modeling
  • 2D hydraulic modelling
  • altimetry
  • and transboundary floods
  • Bayesian analysis
  • building representation
  • Climate Change
  • Colombo city, Sri Lanka
  • countermeasures
  • damage assessment
  • Data assimilation
  • data integration
  • data scarce environments
  • DEM-based methods
  • digital elevation model (DEM)
  • DTM
  • ensemble Kalman filter
  • EU Floods Directive
  • extreme rainfall
  • Flood
  • flood hazards
  • flood impacts
  • flood inundation maps
  • flood mapping
  • flood mapping and modelling
  • flood monitoring
  • flood risk management
  • floodplains
  • Geomorphology
  • HEC-RAS
  • high-resolution AGCM
  • History of engineering & technology
  • hydraulic geometry
  • hydro-economic
  • hydroinformatics
  • IDF curves
  • inundation analysis
  • large scale
  • Lower Mekong river basin
  • Mekong Basin
  • Metro Colombo canal system
  • MODIS
  • National Water Model (NWM)
  • near real-time
  • Non-Stationary process
  • open-access remotely sensed data
  • optical data
  • optical satellite
  • Remote sensing
  • rivers dynamics
  • RST-FLOOD
  • scaling in hydrology
  • SCS-CN
  • socioeconomic
  • synthetic aperture radar
  • Technology, engineering, agriculture
  • Technology: general issues
  • terrain analysis
  • uncertainty
  • ungauged streams
  • urban floods
  • VIIRS

Links

DOI: 10.3390/books978-3-03943-526-5

Editions

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