Abstract
During the cold dry season, a large amount of groundwater is pumped for water-curtain cultivation in agricultural fields mostly located near the four major rivers of South Korea. Several weirs, installed previously to secure sufficient water resources from these rivers, were opened in 2017 for restoring the riverine environment. Weir-controlled river level fluctuations have altered stream–aquifer interactions, leading to groundwater drawdown. In this study, changes in stream–aquifer interaction caused by seasonal pumping and weir opening were investigated, using Visual MODFLOW. Two indexes that considered the pump type and aquifer characteristics—the pumping available thickness (PAT) and aquifer productivity index (API)—were used to analyze the effects of weir opening on seasonal groundwater use. Our simulations indicated that weir opening had a large impact on seasonal groundwater use due to groundwater drawdown, especially with respect to centrifugal pumps located in low transmissivity areas where the API decreased after the weir was opened. The resulting decrease in groundwater pumping rates would lower the thermal effect of the water-curtain greenhouse process. This indicates that water supply alternatives are needed so that the weirs can be operated efficiently and field requirements can be met, while the deleterious effects on groundwater are avoided.
Funder
Korea Ministry of Science and ICT (MSIT): Basic Research Project of the Korea Institute of Geoscience and Mineral Resources
Subject
Water Science and Technology,Aquatic Science,Geography, Planning and Development,Biochemistry
Reference40 articles.
1. Report of Research on the Improvement Plan of Environment Friendly Water-Curtain Cultivation Area for Groundwater Conservation,2019
2. Impacts of Seasonal Pumping on Stream Depletion
3. Hydrogeological Characteristics of the Wangjeon-ri PCWC area, Nonsan-city, with an Emphasis on Water Level Variations
4. Impacts of Seasonal Pumping on Stream-Aquifer Interactions in Miryang, Korea
5. Quantification of seasonally variable water flux between aquifer and stream in the riparian zones with water curtain cultivation activities using numerical simulation;Kwon;J. Geol. Soc. Kor.,2017