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    오염지역에서의 지하수 유동 경로 해석을 위한 3차원수리지질모델의 활용 = Application of a 3D Hydrogeological Model for Analyzing Groundwater Flow Path in Contaminated Area

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    https://www.riss.kr/link?id=A109518701

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    In this study, a three-dimensional hydrogeological model was developed to numerically deliniate contaminant transportand distribution in the area surrounding the Dalseong mine. The model’s accuracy was assessed by comparing its outputwith the field data. The spatial distribution of contaminants predicted by numerical simulation showed a good similarity tothe field data obtained by electrical resistivity surveys, long-term groundwater observation, and the findings from previoushydrogeochemical studies. These results suggest that a 3D hydrogeological model can be used as an effective tool forpredicting contaminant transport in groundwater, even in situations where field data is limited.
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    In this study, a three-dimensional hydrogeological model was developed to numerically deliniate contaminant transportand distribution in the area surrounding the Dalseong mine. The model’s accuracy was assessed by comparing its outputwith the field ...

    In this study, a three-dimensional hydrogeological model was developed to numerically deliniate contaminant transportand distribution in the area surrounding the Dalseong mine. The model’s accuracy was assessed by comparing its outputwith the field data. The spatial distribution of contaminants predicted by numerical simulation showed a good similarity tothe field data obtained by electrical resistivity surveys, long-term groundwater observation, and the findings from previoushydrogeochemical studies. These results suggest that a 3D hydrogeological model can be used as an effective tool forpredicting contaminant transport in groundwater, even in situations where field data is limited.

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    참고문헌 (Reference)

    1 Kim, D. M., "δ34S and δ18O of sulfates and Zn/Cd ratios reveal the cause of soil and groundwater contamination in metalliferous mining areas" 209 : 106437-, 2020

    2 Artimo, A., "Three-dimensional geologic modeling and groundwater flow modeling of the Töllinperä aquifer in the Hitura nickel mine area, Finland - providing the framework for restoration and protection of the aquifer" 76 (76): 5-17, 2004

    3 Moore, C., "The role of the calibration process in reducing model predictive error" 41 (41): W05050-, 2005

    4 Kim, D. M., "Steel slag-limestone reactor with resistance to Fe: laboratory and pilot scale evaluations of Mn treatment efficiency" 243-248, 2021

    5 김동휘 ; 김경만 ; 김대훈 ; 정승주 ; 백환조, "Prediction of the groundwater inflow by three-dimensional hydrogeologic modelling at an underground Mine" 55 (55): 383-394, 2018

    6 박재용 ; 김중휘, "Numerical evaluation of groundwater contaminant by backfilling in the abandoned mine" 57 (57): 227-242, 2021

    7 Tomiyama, S., "Modeling of the groundwater flow system in excavated areas of an abandoned mine" 230 : 103617-, 2020

    8 "Mine Damage Safety"

    9 Cheong, Y. W., "Metal removal efficiencies of substrates for treating acid mine drainage of the Dalsung mine, south Korea" 64 (64): 147-152, 1998

    10 Kim, D. M., "Manganese coprecipitation/adsorption behaviour and sludge volume ratios in chemical treatment systems for mine drainage: a review of the literature and a pilot-scale experiment" 32 (32): 173-178, 2018

    1 Kim, D. M., "δ34S and δ18O of sulfates and Zn/Cd ratios reveal the cause of soil and groundwater contamination in metalliferous mining areas" 209 : 106437-, 2020

    2 Artimo, A., "Three-dimensional geologic modeling and groundwater flow modeling of the Töllinperä aquifer in the Hitura nickel mine area, Finland - providing the framework for restoration and protection of the aquifer" 76 (76): 5-17, 2004

    3 Moore, C., "The role of the calibration process in reducing model predictive error" 41 (41): W05050-, 2005

    4 Kim, D. M., "Steel slag-limestone reactor with resistance to Fe: laboratory and pilot scale evaluations of Mn treatment efficiency" 243-248, 2021

    5 김동휘 ; 김경만 ; 김대훈 ; 정승주 ; 백환조, "Prediction of the groundwater inflow by three-dimensional hydrogeologic modelling at an underground Mine" 55 (55): 383-394, 2018

    6 박재용 ; 김중휘, "Numerical evaluation of groundwater contaminant by backfilling in the abandoned mine" 57 (57): 227-242, 2021

    7 Tomiyama, S., "Modeling of the groundwater flow system in excavated areas of an abandoned mine" 230 : 103617-, 2020

    8 "Mine Damage Safety"

    9 Cheong, Y. W., "Metal removal efficiencies of substrates for treating acid mine drainage of the Dalsung mine, south Korea" 64 (64): 147-152, 1998

    10 Kim, D. M., "Manganese coprecipitation/adsorption behaviour and sludge volume ratios in chemical treatment systems for mine drainage: a review of the literature and a pilot-scale experiment" 32 (32): 173-178, 2018

    11 Schulze-Makuch, D., "Longitudinal Dispersivity Data and Implications for Scaling Behavior" 43 (43): 443-456, 2005

    12 Zech, A., "Is unique scaling of aquifer macrodispersivity supported by field data" 51 (51): 7662-7679, 2015

    13 이지은 ; 김영규 ; 추창오, "Hydrogeochemistry and comparison of leachate and effluent from the Dalsung mine" 39 (39): 519-533, 2003

    14 Stollberg, R., "Groundwater Contaminant Source Zone Identification at an Industrial and Abandoned Mining Site - a Forensic Backward-in-Time Modelling Approach" Universitätsund Landesbibliothek Sachsen-Anhalt 2013

    15 Diersch, H. -J. G., "FEFLOW: Finite Element Modeling of Flow, Mass and Heat Transport in Porous and Fractured Media" Springer-Verlag 2014

    16 윤용균, "Evaluation of groundwater flow through rock mass around development dpenings of mine" 21 (21): 370-376, 2011

    17 MIRECO(Korea Mine Reclamation Corporation), "Development of Treatment Processes According to Water Quality Characteristics of Mine Drainages" MIRECO 2015

    18 MIRECO(Korea Mine Reclamation Corporation), "Development of Treatment Processes According to Water Quality Characteristics of Mine Drainages" MIRECO 2016

    19 Kim, D. M., "Determination of contamination sources and geochemical reactions in groundwater of a mine area using Cu, Zn, and S-O isotopes" 361 : 142567-, 2024

    20 Kim, D. M., "Determination of contamination sources and geochemical behaviors of metals in soil of a mine area using Cu, Pb, Zn, and S isotopes and positive matrix factorization" 447 : 130827-, 2023

    21 정교철 ; 추창오 ; 이진국, "Characteristics of dalseong acid mine drainage and the role of schwertmannite" 17 (17): 187-196, 2007

    22 Jung, M. C., "Cadmium, Cu, Pb and Zn contamination of stream sediments and waters in a stream around the Dalsung Cu-W mine" 29 (29): 305-313, 1996

    23 MOCT (Ministry Of Construction & Transportation), "Basic Groundwater Survey Report for the Daegu Area" K-water 2004

    24 이민규 ; 박승현 ; 고휘철 ; 정용식 ; 허선희, "A case study on predicting and analyzing inflow sources of underground water in a limestone mine" 33 (33): 388-398, 2023

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