A GIS Based Hydrological Model for Flood Prediction

A GIS Based Hydrological Model for Flood Prediction

EnglishPaperback / softbackPrint on demand
Azhar, Hafiz Muhammad Sohaib
LAP Lambert Academic Publishing
EAN: 9783659920387
Print on demand
Delivery on Monday, 10. of February 2025
CZK 1,056
Common price CZK 1,173
Discount 10%
pc
Do you want this product today?
Oxford Bookshop Praha Korunní
not available
Librairie Francophone Praha Štěpánská
not available
Oxford Bookshop Ostrava
not available
Oxford Bookshop Olomouc
not available
Oxford Bookshop Plzeň
not available
Oxford Bookshop Brno
not available
Oxford Bookshop Hradec Králové
not available
Oxford Bookshop České Budějovice
not available
Oxford Bookshop Liberec
not available

Detailed information

Mostly river water level and flood forecasting methods are based on gauging stations measurements at discrete locations, which limits their capability to provide accurate and timely data over large extent, also limited or no data available on remote locations. So here an idea to use high resolution satellite images for real time mapping of river water level is presented. In this research, a Web based GIS system is developed for mapping river water level, early warning and for flood disasters . To improve flood forecasting / warning, a decision support system (DSS) for flood monitoring and prediction is setup that integrates GIS, satellite image processing and hydrological modelling. A methodology is presented for data integration, floodplain delineation, and online map interfaces. Web based GIS system can dynamically display observed and predicted water levels for decision makers and the general public.The users can access a Web-based GIS system which models current flood events and displays satellite imagery and 3D visualization integrated with the flood plain area.The output from the hydrological modeling be used for flood prediction within next 24-48 hours.
EAN 9783659920387
ISBN 365992038X
Binding Paperback / softback
Publisher LAP Lambert Academic Publishing
Pages 84
Language English
Dimensions 220 x 150 x 5
Authors Azhar, Hafiz Muhammad Sohaib; Tahir, Aqeel; Zafar, Sarmad