• 제목/요약/키워드: Groundwater flow simulation

검색결과 169건 처리시간 0.025초

포항 지열 개발지역에서의 지열 저류층에 대한 SP 모델링

  • 임성근;이태종;송윤호;;송영수
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2004년도 임시총회 및 추계학술발표회
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    • pp.417-421
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    • 2004
  • Self-potential (SP) survey was carried out at Pohang geothermal field. SP measurement showed clear positive anomaly at northern part of the test wells, which can be a up-flow zone of the deep geothermal water due to electrokinetic potential generated by hydrothermal circulation. To give a clearer image of the fluid flow pattern around the test wells, a two-dimensional numerical simulation was applied to construct a numerical block model of the fluid flow system based on SP and magnetotelluric survey results. The result suggests existence of two high permeability zones including the main manifestation area in the northern part of the test wells.

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Determination of the Optimal Strategy for Pump-And-Treat Method

  • Ko, Nak-Youl;Lee, Kang-Kun
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2001년도 추계학술발표회
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    • pp.204-207
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    • 2001
  • An optimization process for the design of groundwater remediation is developed by simultaneously considering the well location and the pumping rate. This process uses two independent models: simulation and optimization model. Groundwater flow and contaminant transport are simulated with MODFLOW and MT3D in simulation model. In optimization model, the location and pumping rate of each well are determined and evaluated by the genetic algorithm. In a homogeneous and symmetric domain, the developed model is tested using sequential pairs for pumping rate of each well, and the model gives more improved result than the model using sequential pairs. In application cases, the suggested optimal design shows that the main location of wells is on the centerline of contaminate distribution. The resulting optimal design also shows that the well with maximum pumping rate is replaced with the further one from the contaminant source along flow direction and that the optimal pumping rate declines when more cleanup time is given. But the optimal pumping rate is not linearly proportional to the cleanup time and the minimum total pumping volume does not coincide with the optimal pumping rate.

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실내인공강우기를 이용한 경사지 밭의 토양유실량과 오염부하 모의 (Simulation of generable muddy water quantity and pollutant loads in sloping field using artificial rainfall simulator)

  • 신민환;최용훈;서지연;이재운;최중대
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2009년도 학술발표회 초록집
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    • pp.986-990
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    • 2009
  • Using artificial rainfall simulator, the soil loss, which is deemed as most cause of muddy water problem among Non-point source(NPS) pollutant, was studied by the analysis of direct runoff flow, groundwater runoff, and groundwater storage properties concerned with rainfall intensity, slope of area, and land cover. The direct runoff showed increasing tendency in both straw covered and bared boxes which are 5%, 10%, and 20% sloped respectively. Also the direct runoff volume from straw covered surface boxes were much lower than bared surface boxes. It's deemed as that the infiltration capacity of straw covered surface boxes were increased, because the surface sealing by fine material of soil surface didn't occurred due to the straw covering. Under the same rainfall intensity and slope condition, 2.4 ${\sim}$ 8.2 times of sediment yield were occurred from bared surface boxes more than straw covered surface boxes. The volume of infiltrated were increased due to straw cover, the direct runoff flow were decreased with decreasing of tractive force in surface. To understand of relationship the rate of direct runoff flow, groundwater runoff, and groundwater storage by the rainfall intensity, slope, and land cover, the statistical test was performed. It shows good relationship between most of factors, expect between the rate of groundwater storage and rainfall intensity.

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다양한 지구통계기법의 지하매질 예측능 및 적용성 비교연구 (Comparative Analysis of Subsurface Estimation Ability and Applicability Based on Various Geostatistical Model)

  • 안정우;정진아;박은규
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제19권4호
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    • pp.31-44
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    • 2014
  • In the present study, a few of recently developed geostatistical models are comparatively studied. The models are two-point statistics based sequential indicator simulation (SISIM) and generalized coupled Markov chain (GCMC), multi-point statistics single normal equation simulation (SNESIM), and object based model of FLUVSIM (fluvial simulation) that predicts structures of target object from the provided geometric information. Out of the models, SNESIM and FLUVSIM require additional information other than conditioning data such as training map and geometry, respectively, which generally claim demanding additional resources. For the comparative studies, three-dimensional fluvial reservoir model is developed considering the genetic information and the samples, as input data for the models, are acquired by mimicking realistic sampling (i.e. random sampling). For SNESIM and FLUVSIM, additional training map and the geometry data are synthesized based on the same information used for the objective model. For the comparisons of the predictabilities of the models, two different measures are employed. In the first measure, the ensemble probability maps of the models are developed from multiple realizations, which are compared in depth to the objective model. In the second measure, the developed realizations are converted to hydrogeologic properties and the groundwater flow simulation results are compared to that of the objective model. From the comparisons, it is found that the predictability of GCMC outperforms the other models in terms of the first measure. On the other hand, in terms of the second measure, the both predictabilities of GCMC and SNESIM are outstanding out of the considered models. The excellences of GCMC model in the comparisons may attribute to the incorporations of directional non-stationarity and the non-linear prediction structure. From the results, it is concluded that the various geostatistical models need to be comprehensively considered and comparatively analyzed for appropriate characterizations.

터널굴착이 지반환경에 미치는 영향에 관한 연구 - 계룡산 터널의 시뮬레이션 결과를 중심으로 - (Study on the Impact Of Tunnel Construction on Geo-environment - Simulation study on the Gyerong tunnel -)

  • 임형규;장윤영
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제13권5호
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    • pp.88-95
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    • 2008
  • 본 연구에서는 터널 굴착으로 인한 지하수 영향 등 지반 환경 문제 해결을 위한 합리적인 평가 방법을 정립하고 이를 국민적 초미의 관심사 중 하나인 호남고속철도 계룡산 터널 구간에 적용하므로써, 계룡산 구간을 통과하는 터널 구간에 대한 환경문제(지하수/토양)를 사전에 연구하여 최적의 대안을 도출코자 한다. 지하수 유동모델링 결과 터널 굴착에 따른 지하수의 유출 및 지하수위 강하가 발생하며 터널굴착 완료 후에 지하수위가 회복되는 양상을 보인다. 따라서 구간에 분포하는 연약구간에 대해서는 특수 그라우팅이 필요할 것으로 사료된다.

유선 시뮬레이션 기법과 준해석해를 이용한 용질 거동 분석

  • 정대인;최종근;박광원
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2004년도 총회 및 춘계학술발표회
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    • pp.57-62
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    • 2004
  • Streamline simulation researches have been extensively accomplished due to the swiftness of computation and the reduction of numerical dispersion. In this study, we developed a streamline simulation model using a semianalytical solution of ID transport equation. To validate accuracy of the developed model, we compared simulation results of contaminant transport, which were acquired by streamline simulation models using an analytical solution, a numerical solution, and a semianalytical solution. The developed model using the semianalytical solution matched well with the model using an analytical solution. However, streamline simulation model using a numerical solution showed numerical dispersion. For an advection-dominant flow, there was little difference in the simulation results between the developed model and tile analytical model, but the differences between the analytical model and the numerical model were cleary shown. From the comparison of computing time we know that the streamline simulation using the semianalytical solution is 2-60 times as fast as the streamline simulation using the numerical solution.

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수치 시뮬레이션을 이용한 복수정(Two-Well) 개방형 지열 시스템의 열원수 온도 변화 검토 (A Study on the Characteristics of Heat Source Temperature for Two-Well Geothermal System Using Numerical Simulation)

  • 조정흠;남유진
    • 설비공학논문집
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    • 제27권4호
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    • pp.207-212
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    • 2015
  • The use of groundwater and ground_heat is one of the ways to use natural and renewable energy, and it has been considered as a technology to reduce greenhouse gas emissions and increase energy-saving. There are a few researches on the optimum design for the open-loop geothermal system. In this study, to develop the optimal design method numerical simulation of the open-loop geothermal system with two-wells was performed by a groundwater and heat transfer model. In this paper, a study was performed to analyze the system performance according to well distance and pumping flow rate. In the result, average heat exchange rate and heat source temperature were calculated and it was found that they were dependent on the pumping rate.

기후 변화에 따른 제주도 표선 유역의 함양률 및 수위변화 예측 (Impact of Climate Change on the Groundwater Recharge and Groundwater Level Variations in Pyoseon Watershed of Jeju Island, Korea)

  • 신에스더;고은희;하규철;이은희;이강근
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제21권6호
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    • pp.22-35
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    • 2016
  • Global climate change could have an impact on hydrological process of a watershed and result in problems with future water supply by influencing the recharge process into the aquifer. This study aims to assess the change of groundwater recharge rate by climate change and to predict the sustainability of groundwater resource in Pyoseon watershed, Jeju Island. For the prediction, the groundwater recharge rate of the study area was estimated based on two future climate scenarios (RCP 4.5, RCP 8.5) by using the Soil Water Balance (SWB) computer code. The calculated groundwater recharge rate was used for groundwater flow simulation and the change of groundwater level according to the climate change was predicted using a numerical simulation program (FEFLOW 6.1). The average recharge rate from 2020 to 2100 was predicted to decrease by 10~12% compared to the current situation (1990~2015) while the evapotranspiration and the direct runoff rate would increase at both climate scenarios. The decrease in groundwater recharge rate due to the climate change results in the decline of groundwater level. In some monitoring wells, the predicted mean groundwater level at the year of the lowest water level was estimated to be lower by 60~70 m than the current situation. The model also predicted that temporal fluctuation of groundwater recharge, runoff and evapotranspiration would become more severe as a result of climate change, making the sustainable management of water resource more challenging in the future. Our study results demonstrate that the future availability of water resources highly depends on climate change. Thus, intensive studies on climate changes and water resources should be performed based on the sufficient data, advanced climate change scenarios, and improved modeling methodology.

사면 내의 지하수 유동과 사면의 안정성에 대한 강수 영향의 완전 연동된 수리지질역학적 수치 해석 (A Fully Coupled Hydrogeomechanical Numerical Analysis of Rainfall Impacts on Groundwater Flow in Slopes and Slope Stability)

  • 김준모
    • 한국지반공학회논문집
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    • 제18권6호
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    • pp.5-16
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    • 2002
  • 사면 내의 지하수 유동과 사면의 안정성에 대한 강수의 영향을 평가하기 위하여 수리지질역학적 수치 모델이 제시되었다. 이 수치 모델은 변형성 지질매체 내에서의 포화-불포화 지하수 유동을 설명하는 완전 연동된 간극탄성론적 지배 방정식들과 Galerkin 유한요소법에 근거하여 개발되었다. 이렇게 개발된 완전 연동된 수리지질역학적 수치 모델은 다양한 강수량 조건 하에 있는 불포화 사면에 대한 일련의 수치모의실험에 적용되었다. 이러한 수치모의실험 결과들은 강수량이 증가할수록 사면의 전반적인 수리역학적 안정성이 저하되며 잠재적인 파괴가 사면 전단부에서부터 시작되어 사면 정상부 쪽으로 팽창됨을 보여주고 있다. 강수량이 증가함에 따라 수리지질학적으로는 압력수두와 전체 수리수두가 증가한다. 그 결과 지하수면이 상승하고 불포화대가 감소하며 삼출면이 사면 전단부로부터 사면 정상부쪽으로 팽창하고 이러한 삼출면에서의 지하수 유동 속도도 증가하게 된다. 한편 강수량이 증가함에 따라 지질역학적으로는 사면 전단부를 향해 수평 변위는 증가하지만 수직 변위는 감소하게 된다. 이는 강수량 증가에 따른 지하수면의 상승에 수반하는 부력에 기인하는 것으로 해석된다. 그 결과 사면의 전반적인 변형이 사면 전단부를 향해 심화되고 전단파괴 안전율이 1 이하인 불안전한 지역이 사면 전단부에서 두꺼워지면서 사면 전단부에서부터 사면 정상부 쪽으로 팽창하게 된다. 또한 수치모의실험 결과들은 이러한 잠재적인 전단파괴면과 지표면 사이의 지반에서는 잠재적인 인장파괴가 발생할 수 있음을 보여주고 있다.

창원시 북면 낙동강 주변 하성퇴적층의 지하수유동 모델링 연구 (A Study on Groundwater Flow Modeling in the Fluvial Aquifer Adjacent to the Nakdong River, Book-Myeon Area, Changwon City)

  • 함세영;정재열;김형수;한정상;류수희
    • 자원환경지질
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    • 제37권5호
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    • pp.499-508
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    • 2004
  • 창원시는 전국에서 최초로 2001년에 북면과 대산면에 강변여과수 취수장을 건설하여 운영하고 있다. 본 연구는 창원시 북면 낙동강 본류 하안의 강변여과수 취수장 주변에 대해서 수리지질 특성을 평가하고 낙동강과 강변대수층간의 지하수유동 모델링을 수행하였다. 이를 통하여 강변여과수 취수에 따른 낙동강물과 지하수 유입량을 평가하였다. 지하수모델링에서는 시추자료, 입도분석자료, 양수시험분석자료, 지하수위 측정자료, 낙동강 수위 측정자료, 강수량 자료를 이용하였다. 정상류 모델링으로 강변여과수 취수 이전의 자연상태의 지하수위를 잘 모사할 수 있었다. 부정류 상태 모델링에서는 7개 취수정의 최대 양수량인 총 14,000$m^3$/day로 취수시의 지하수위 하강을 모사하였으며, 이때 낙동강으로부터의 유입량, 배후지쪽의 지하수 유입량 그리고 강변대수층의 동측과 서측으로부터 유입량은 전체 유입량의 각각 8,390$m^3$/day(60%), 590$m^3$/day(4%), 5,020$m^3$/day(36%)이다. 입자 추적 모사 결과, 낙동강쪽으로부터 취수정 쪽으로의 유입속도는 약 1.85m/day이고, 배후지로부터 취수정 쪽으로의 유입속도는 약 0.75m/day이다. 본 연구는 지표수/지하수 연계관리 모델링에 공헌하며, 강변여과수 취수량, 수질, 자연적인 함양량이 계절적으로 어떻게 영향을 받는지를 이해하는데 도움을 줄 것이다.