Back to Search Start Over

A study of the influence of rainfall datasets' spatial resolution on stream simulation in Chaliyar River Basin, India

Authors :
Silpa Senan
Jobin Thomas
Vamsi Krishna Vema
P. J. Jainet
Sinan Nizar
Shyama Sivan
K. P. Sudheer
Source :
Journal of Water and Climate Change, Vol 13, Iss 12, Pp 4234-4254 (2022)
Publication Year :
2022
Publisher :
IWA Publishing, 2022.

Abstract

Rainfall is a vital input to model watershed hydrology, and the availability of numerous gridded and point-observed rainfall datasets poses a major challenge to the modellers to choose the appropriate data. This study compares three gridded rainfall datasets (i.e., 1° × 1°, 0.5° × 0.5°, and 0.25° × 0.25°) and point rainfall observations of the India Meteorological Department (IMD) on the simulation of streamflow of a river basin in the southern Western Ghats (India) using the Soil and Water Assessment Tool (SWAT). The results show that the different datasets lead to different optimal model parameter values and consequent water balance components, significantly in groundwater hydrology. The 0.5° × 0.5° and 0.25° × 0.25° datasets result in comparable SWAT model performances (NSE = 0.75 and 0.70, respectively), probably due to the similarity in the rain gauge network density employed for deriving the datasets and also due to the spatial discretization threshold used for sub-watershed delineation. However, the coarser resolution data (1° × 1°) results in poor performance (NSE = 0.21). The study suggests that the choice of rainfall data depends on the spatial resolution of the data and the spatial discretization threshold while compromising the computational requirement vis-à-vis simulation accuracy. HIGHLIGHTS The effects of various IMD gridded rainfall datasets and point rainfall observations on the simulation of streamflow of a river basin of the southern Western Ghats (India) was assessed.; The optimal parameter values for 1° × 1° rainfall data are far deviated from the point observation data.; The 0.25° × 0.25° and 0.5° × 0.5° have better model performances compared to 1° × 1° and point observations.;

Details

Language :
English
ISSN :
20402244 and 24089354
Volume :
13
Issue :
12
Database :
Directory of Open Access Journals
Journal :
Journal of Water and Climate Change
Publication Type :
Academic Journal
Accession number :
edsdoj.7105ef2741245eea0dcf332eb955415
Document Type :
article
Full Text :
https://doi.org/10.2166/wcc.2022.273