Checking for non-preferred file/folder path names (may take a long time depending on the number of files/folders) ...

GroMoPo Metadata for Cheongwon-gun SW-GW model


Authors:
Owners: This resource does not have an owner who is an active HydroShare user. Contact CUAHSI (help@cuahsi.org) for information on this resource.
Type: Resource
Storage: The size of this resource is 1.6 KB
Created: Feb 08, 2023 at 9:30 p.m.
Last updated: Feb 08, 2023 at 9:30 p.m.
Citation: See how to cite this resource
Sharing Status: Public
Views: 515
Downloads: 228
+1 Votes: Be the first one to 
 this.
Comments: No comments (yet)

Abstract

In South Korea, groundwater intended for use in greenhouse cultivation is collected from shallow riverside aquifers as part of agricultural activities during the winter season. This study quantified the effects of intensive groundwater intake on aquifers during the winter and examined the roles of nearby rivers in this process. Observation data were collected for approximately two years from six wells and two river-level observation points on the study site. Furthermore, the river water levels before and after the weir structures were examined in detail, because they are determined by artificial structures in the river. The structures have significant impacts on the inflow and outflow from the river to the groundwater reservoirs. As a result, a decline in groundwater levels owing to groundwater depletion was observed during the water curtain cultivation (WCC) period in the winter season. In addition, we found that the groundwater level increased owing to groundwater recharge due to rainfall and induced recharge by rivers during the spring-summer period after the end of the WCC period. MODFLOW, a three-dimensional difference model, was used to simulate the groundwater level decreases and increases around the WCC area in Cheongwon-gun. Time-variable recharge data provided by the soil and water assessment tool model, SWAT for watershed hydrology, was used to determine the amount of groundwater recharge that was input to the groundwater model. The groundwater level time series observations collected from observation wells during the two-year simulation period (2012 to 2014) were compared with the simulation values. In addition, to determine the groundwater depletion of the entire demonstration area and the sustainability of the WCC, the quantitative water budget was analyzed using integrated hydrologic analysis. The result indicated that a 2.5 cm groundwater decline occurred on average every year at the study site. Furthermore, an analysis method that reflects the stratification and boundary conditions of underground aquifers, hydrogeologic properties, hydrological factors, and artificial recharge scenarios was established and simulated with injection amounts of 20%, 40%, and 60%. This study suggested a proper artificial recharge method of injecting water by wells using riverside groundwater in the study area.

Subject Keywords

Coverage

Spatial

Coordinate System/Geographic Projection:
WGS 84 EPSG:4326
Coordinate Units:
Decimal degrees
Place/Area Name:
Korea, Republic of
North Latitude
36.5371°
East Longitude
127.3226°
South Latitude
36.5253°
West Longitude
127.2970°

Content

Additional Metadata

Name Value
DOI 10.3390/hydrology8020060
Depth 60
Scale < 10 km²
Layers 3
Purpose Groundwater resources
GroMoPo_ID 449
IsVerified True
Model Code MODFLOW
Model Link https://doi.org/10.3390/hydrology8020060
Model Time 2012-2014
Model Year 2021
Model Authors Chang, SW; Chung, IM
Model Country Korea, Republic of
Data Available Report/paper only
Developer Email chang@kict.re.kr; imchung@kict.re.kr
Dominant Geology Model focuses on multiple geologic materials
Developer Country South Korea
Publication Title Water Budget Analysis Considering Surface Water-Groundwater Interactions in the Exploitation of Seasonally Varying Agricultural Groundwater
Original Developer No
Additional Information
Integration or Coupling Surface water
Evaluation or Calibration Dynamic water levels
Geologic Data Availability No

How to Cite

GroMoPo, S. Ruzzante (2023). GroMoPo Metadata for Cheongwon-gun SW-GW model, HydroShare, http://www.hydroshare.org/resource/57c59d57c6824a2badf11f7052900b78

This resource is shared under the Creative Commons Attribution CC BY.

http://creativecommons.org/licenses/by/4.0/
CC-BY

Comments

There are currently no comments

New Comment

required