4.6 Article

Hydrological Effects of Agricultural Water Supplies on Paddy Fields using Surface-Groundwater Integrated Model

期刊

WATER
卷 14, 期 3, 页码 -

出版社

MDPI
DOI: 10.3390/w14030460

关键词

hydrological responses; irrigation; paddy fields; groundwater; soil moisture; CAT model

资金

  1. Korea Institute of Civil Engineering and Building Technology [20210194-001]
  2. National Research Council of Science & Technology (NST), Republic of Korea [20210194-001] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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This study used the integrated surface-groundwater model CAT to simulate the streamflow of a sub-catchment in the Boryeong Dam catchment. The results showed that agricultural reservoir supply water increased the direct flow, baseflow, and groundwater recharge in the catchment, and had a significant effect on soil moisture and groundwater levels in irrigated paddy fields.
Agricultural water demands are mainly dependent on the supply from groundwater withdrawals and the supply from agricultural reservoirs. To understand the water cycle of the agricultural catchment, it is necessary to consider the actual situation of the water cycle of paddy fields in catchments through accurate hydrological modeling. In this study, streamflow simulations were implemented in consideration of the levee height of paddy fields and the irrigation period for one sub-catchment of the Boryeong Dam catchment using the integrated surface-groundwater model, CAT (Catchment Hydrologic Cycle Assessment Tool). To consider the agricultural reservoirs in modeling, the catchment was divided into the reservoir sub-catchments, upstream sub-catchments, downstream sub-catchments, and irrigated districts of each sub-catchment. This study aims to analyze the hydrological effects of agricultural reservoirs and groundwater pumping on the hydrological cycle of the catchment and on the soil moisture and groundwater level. As a result of the simulations, we found that the direct flow, baseflow, and groundwater recharge of the catchment increased with the agricultural reservoir supply water. In addition, the effect of drought on soil moisture content and groundwater level in the irrigated paddy fields from agricultural reservoirs was evaluated. The soil moisture increased by about 10% according to the water supply of agricultural reservoirs. The groundwater level rapidly decreased due to the groundwater abstraction during the irrigation period; however, it was analyzed that the water supply from agricultural reservoirs is significantly effective in preventing the decrease in the groundwater level in the irrigation season.

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