TY - JOUR
T1 - Hydrological effects of climate change, groundwater withdrawal, and land use in a small Korean watershed
AU - Lee, Kil Seong
AU - Chung, Eun Sung
PY - 2007/10/30
Y1 - 2007/10/30
N2 - The effects of variability in climate and watershed (groundwater withdrawal and land use) on dry-weather streamflows were investigated using SWAT (Soil and Water Assessment Tool). The equation to predict the total runoff (TR) using climate data was derived from simulation results for 30 years by multiple regression analysis. These may be used to estimate effects of various climate variations (precipitation during the dry period, precipitation during the previous wet period, solar radiation, and maximum temperature). For example, if daily average maximum temperature increases by 3 °C, TR during the dry period will decrease by 27.9%. Similarly, groundwater withdrawals strongly affect streamflow during the dry period. However, land use changes (increasing urbanization) within the forested watershed do not appear to significantly affect TR during the dry period. Finally, a combined equation was derived that describes the relationships between the TR during the dry period and the climate, groundwater withdrawal and urban area proportion in a small monsoon watershed. This equation will be effective to predict the water availability during the dry periods in the future since it is closely related to changes of temperature, precipitation, solar radiation, urban area ratio, and groundwater withdrawal quantity.
AB - The effects of variability in climate and watershed (groundwater withdrawal and land use) on dry-weather streamflows were investigated using SWAT (Soil and Water Assessment Tool). The equation to predict the total runoff (TR) using climate data was derived from simulation results for 30 years by multiple regression analysis. These may be used to estimate effects of various climate variations (precipitation during the dry period, precipitation during the previous wet period, solar radiation, and maximum temperature). For example, if daily average maximum temperature increases by 3 °C, TR during the dry period will decrease by 27.9%. Similarly, groundwater withdrawals strongly affect streamflow during the dry period. However, land use changes (increasing urbanization) within the forested watershed do not appear to significantly affect TR during the dry period. Finally, a combined equation was derived that describes the relationships between the TR during the dry period and the climate, groundwater withdrawal and urban area proportion in a small monsoon watershed. This equation will be effective to predict the water availability during the dry periods in the future since it is closely related to changes of temperature, precipitation, solar radiation, urban area ratio, and groundwater withdrawal quantity.
KW - Climate change
KW - Dry period
KW - Groundwater withdrawal
KW - Input sensitivity analysis
KW - Land use
KW - SWAT
KW - Total runoff
UR - http://www.scopus.com/inward/record.url?scp=35748933831&partnerID=8YFLogxK
U2 - 10.1002/hyp.6513
DO - 10.1002/hyp.6513
M3 - Article
AN - SCOPUS:35748933831
SN - 0885-6087
VL - 21
SP - 3046
EP - 3056
JO - Hydrological Processes
JF - Hydrological Processes
IS - 22
ER -