DocumentCode :
563049
Title :
Hydrological modelling of catchments using MIKE SHE
Author :
Akbari, Saba ; Singh, Rajdeep
Author_Institution :
Dept. of civil Eng., K.L. Univ., Guntur, India
fYear :
2012
fDate :
30-31 March 2012
Firstpage :
335
Lastpage :
340
Abstract :
This study focuses on the application of physically based distributed modelling system MIKE SHE on Salebhata catchment, lying in the middle reaches of Mahanadi River Basin. Remote sensing data were processed for generating Topography map and land use/cover maps, respectively. Thematic layers for topography, Thiessen polygons for rainfall and evapotranspiration, and soil were prepared in ARC GIS 9.3. Model setup of MIKE SHE was prepared for the catchment and subsequently calibrated and validated for 4 years (1st June 2004 to 31st May 2007) and 2 year (1st June 2007 to 31st May 2009), respectively, considering different efficiency criteria between observed and simulated discharge. The results show that the model is capable of simulating the hydrological water balance. In this study, efficiency criteria i.e. Nash-Sutcliffe efficiency (NSE), was applied to the simulated result to analyze the predictability of the simulated runoff. During calibraton, NSE, of 0.78 were obtained for Salebhata catchment. Calibrated MIKE SHE model was used to simulate hydrological water balance during validation. In validation all the efficiency criteria were within appreciable range satisfying the modeling purpose. During validation an error of 12 mm (0.503%) for runoff was obtained.
Keywords :
calibration; evaporation; hydrology; rain; soil; terrain mapping; topography (Earth); transpiration; AD 2004 06 01 to 2007 05 31; AD 2007 06 01 to 2009 05 31; ARC GIS 9.3. Model setup; India; MIKE SHE modelling; Mahanadi River Basin; Nash-Sutcliffe efficiency; Salebhata catchment; Thiessen polygons; calibraton; catchments; efficiency criteria; evapotranspiration; hydrological modelling; hydrological water balance; land cover maps; land use maps; predictability; rainfall; remote sensing data; runoff; soil; topography map; Bismuth; Integrated circuits; Soil; Surfaces; Water conservation; Hydrological model; Thematic layers; calibration; efficiency criteria; validation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Advances in Engineering, Science and Management (ICAESM), 2012 International Conference on
Conference_Location :
Nagapattinam, Tamil Nadu
Print_ISBN :
978-1-4673-0213-5
Type :
conf
Filename :
6216284
Link To Document :
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