• 제목/요약/키워드: Groundwater flow model

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산악지 절토에 따른 지하수 유동분석 (Analysis of Groundwater Flow due to Mountain Cutting)

  • 천병식;김성수;공진영;김영일
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2008년도 추계 학술발표회
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    • pp.466-474
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    • 2008
  • The purpose of this study was to comparatively analyze the measured values and modelling values when a sample mountain was cut and thereby, assess the fitness of the prediction model. For this purpose, the researcher analyzed the relationship between the groundwater levels measured at 7 monitoring holes set within the area of the underground flow prediction model and the levels of the groundwater monitoring holes before and after mountain cutting. As a result of this analysis, it was found that the MODFLOW program itself was limited and uncertain in terms of calibration of the modelling values. Since the model was based on the assumption that the same amount of rainfalls would permeate into the ground when the sample mountain area was cut up to 50m high, it was deemed inevitable that the result of modelling was different from the actual measurement.

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지하수 모델링 기법을 이용한 인공함양정 최적 위치 평가 (Determining Optimal Locations of an Artificial Recharge Well using an Optimization-coupled Groundwater Flow Model)

  • 이현주;구민호;김용철
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제19권3호
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    • pp.66-81
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    • 2014
  • A Fortran program was developed to determine the optimal locations of an artificial recharge well. Three objective functions were considered: (1) maximizing the recovery rates, (2) maximizing the injection rates, and (3) minimizing the coefficient of variation of the increased pumping rates. We also suggested a new aggregate objective function which combined the first and the third objective functions. The model results showed that locating the injection well inside the cluster of pumping wells was desirable if either the recovery or the injection rate was taken into account. However, the injection well located outside the cluster evenly increased the pumping rates in existing pumping wells. Therefore, for clustered pumping wells, installing an injection well at the center or the upstream of the pumping wells seems beneficial. For linear arrangement of pumping wells parallel to the constant head boundary, locating the injection well in the upstream was recommended. On the contrary, in case of the linear arrangement perpendicular to the constant head boundary, the injection well installed on both sides of the central part of the pumping wells was preferable.

지하수위 변동 해석모델 개발(I): 모델의 이론 (Development of Analyzing Model of Groundwater Table Fluctuation(I): Theory of Model)

  • 김남원;김윤정;정일문
    • 대한토목학회논문집
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    • 제33권6호
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    • pp.2277-2284
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    • 2013
  • 본 연구에서 개발하고자 하는 지하수위 변동 해석모델은 지하수의 흐름과 관련된 반응계수 및 함양형태와 관련된 비산출율을 매개변수로 하여 부정류상태에서의 지하수위 변동특성을 해석한다. 모델의 시험적용을 위해 제주도 한천지역의 JD 용담1과 JW 공항지점의 5년(2006-2010)간의 지하수위 관측자료를 이용하였다. 매개변수 산정결과, JD 용담1지점에서는 비산출율 0.023, 반응계수 0.039로 추정되었고, JW 공항지점에서는 각각 0.009와 0.028로 추정되었다. 본 연구에서 개발한 모델을 이용하면, 지하수위에 의한 함양량 및 포화대에서의 매개변수를 추정할 수 있어 수문모형의 매개변수 및 비포화대에서의 침루특성을 확인하는 수단으로 활용되기를 기대한다.

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.

다양한 조건에 따른 지반함몰과 지중공동 확장에 대한 실험적 연구 (Experimental Study on Ground Subsidence and Underground Cavity Expansion under Various Conditions)

  • 정성윤;타렉 카루이;정영훈;김동수
    • 지질공학
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    • 제27권2호
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    • pp.143-152
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    • 2017
  • 최근 도심지에서 자주 발생하는 지반함몰 문제는 사회적 문제로 대두되고 있으며, 지반함몰에 대한 시민들의 우려는 증가하고 있다. 그에 비해 지반함몰 발생 메커니즘에 대한 이해는 부족한 실정이다. 따라서 본 연구에서는 모형실험을 통해 다양한 지하수 조건에서 지하수와 토사가 동시에 유실될 때의 지반함몰 발생 메커니즘을 평가하고자 한다. 실험을 통해서 밝혀진 지반함몰 메커니즘의 주요 인자는 지하수 흐름 방향, 유출부위 주변 수두차, 지중 공동 유지를 위한 지반 내 강도 등이다. 첫째로 지하수와 토사가 동시에 유실될 때 토사의 유실은 지하수 흐름 방향을 따라 발생하며 이는 지중 공동 생성 및 공동 확장 방향을 결정짓는 요소임을 확인했다. 둘째로 지하수 및 토사가 유실되는 위치 주변의 수두차가 높아질수록 지반함몰 발생 속도가 급격히 빨라지는 것이 실험적으로 확인되었다. 마지막으로 지중 공동 확장으로 인해 최종적으로 갑작스런 붕괴를 일으킬 수 있음이 확인되었다.

계절양수가 하천건천화에 미치는 영향 (Impacts of Seasonal Pumping on Stream Depletion)

  • 이현주;구민호;임진실;유병호;김용철
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제21권1호
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    • pp.61-71
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    • 2016
  • Visual MODFLOW was used for quantifying stream-aquifer interactions caused by seasonal groundwater pumping. A hypothetical conceptual model was assumed to represent a stream-aquifer system commonly found in Korea. The model considered a two-layered aquifer with the upper alluvium and the lower bedrock and a stream showing seasonal water level fluctuations. Our results show that seasonal variation of the stream depletion rate (SDR) as well as the groundwater depletion depends on the stream depletion factor (SDF), which is determined by aquifer parameters and the distance from the pumping well to the stream. For pumping wells with large SDF, groundwater was considerably depleted for a long time of years and the streamflow decreased throughout the whole year. The impacts of return flow were also examined by recalculating SDR with an assumed ratio of immediate irrigation return flow to the stream. Return flow over 50% of pumping rate could increase the streamflow during the period of seasonal pumping. The model also showed that SDR was affected by both the conductance between the aquifer and the stream bed and screen depths of the pumping well. Our results can be used for preliminary assessment of water budget analysis aimed to plan an integrated management of water resources in riparian areas threatened by heavy pumping.

통합수문모형을 이용한 장성지역의 분포형 지하수 함양량 추정 (Estimation of Distributed Groundwater Recharge in Jangseong District by using Integrated Hydrologic Model)

  • 정일문;박승혁;이정은;김민규
    • 대한토목학회논문집
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    • 제38권4호
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    • pp.517-526
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    • 2018
  • 지하수 함양은 기후조건, 토지이용, 수리지질학적 비균질성에 의해 시공간적인 변동성을 나타내므로 통합수문해석에 의한 지하수 함양량의 추정이 필요하다. 본 연구에서는 SWAT-MODFLOW 연계모형을 활용하여 장성지역의 물리적 기반의 일단위 지하수 함양량을 산정하였다. 수문분석은 하천에서의 관측유량과 계산유량의 검보정에 이어 부정류 지하수위의 계산값과 관측값의 비교를 통해 모형의 정확도를 평가하였다. 추정된 수문성분은 상호간에 서로 관련이 깊고, 유역내의 비균질한 인자들인 소유역 경사, 토지이용, 토양종류에 따라 지하수 함양량의 공간적 변동이 크게 나타났다. 통합수문모형은 지표수 및 지하수 수문성분 프로세스의 시공간적 변화를 잘 모의하고 있는 것으로 평가되었다. 추정된 함양량의 평균은 약 20.8%로 나타났다.

지표수 지하수 연계운영에 의한 갈수기 지표수-수자원관리 (Conjunctive Management Considering Stream-Aquifer Systems for Drought Season)

  • 차기욱;김우구;신용노
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2008년도 학술발표회 논문집
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    • pp.389-394
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    • 2008
  • The purpose of this research was to develop a methodology to determine whether conjunctive surface water and groundwater management could significantly reduce deficits in a river basin with a relatively limited alluvial aquifer. The Geum River basin is one of major river basins in South Korea. The upper region of the Geum River basin is typical of many river basins in Korea where the shape of river basin is narrow with small alluvial aquifer depths from 10m to 20m and where most of the groundwater pumped comes quickly from the steamflow. The basin has two surface reservoirs, Daecheong and Yongdam. The most recent reservoir, Yongdam, provides water to a trans-basin diversion, and therefore reduces the water resources available in the Geum River basin. After the completion of Yongdam reservoir, the reduced water supply in the Geum basin resulted in increasing conflicts between downstream water needs and required instream flows, particularly during the low flow season. Historically, the operation of groundwater pumping has had limited control and is administered separately from surface water diversions. Given the limited size of the alluvial aquifer, it is apparent that groundwater pumping is essentially taking its water from the stream. Therefore, the operation of the surface water withdrawals and groundwater pumping must be considered together. The major component of the conjunction water management in this study is a goal-programmin g based optimization model that simultaneously considers surface water withdrawals, groundwater pumping and instream flow requirements. A 10-day time step is used in the model. The interactions between groundwater pumping and the stream are handled through the use of response and lag coefficients. The impacts of pumping on streamflow are considered for multiple time periods. The model is formulated as a linear goal-programming problem that is solved with the commercial LINGO optimization software package.

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부산시 해안 인근 지역에서의 터널 굴착에 따른 지하수 거동 영향 평가 (Physical and chemical analyses of ground-water by impacts of tunneling at coastal urban region in Busan)

  • 김형수;이주현;안주희;정의진;김준모;윤운상;정상용;이진무;우상우
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2005년도 춘계 학술발표회 논문집
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    • pp.457-464
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    • 2005
  • In the case of tunneling, the equilibrium state of hydro-geologic environments destroy and change abruptly in some section of whole works. Specially, it's very possible for seawater to intrude toward the site of tunnel if the field is nearly located in a costal region. In this study, we have evaluated the mechanism related between groundwater flow and seawater intrusion that by impacts of tunneling. Various hydro-geological field tests have performed for getting four representative hydrogeologic properties of geologic formations such as transmissivity (T), storativity(S), longitudial dispersity(${\alpha}_L$), and effective porosity($n_e$). For the effect of tunneling, the numerical model was first simulated based on the governing equation of groundwater flow. The results showed that the maximum drawdown was 17.2m and the total inflow into the tunnel had the range from 0.48 to $3.63m^3/day/m$. Secondly, the three dimensional numerical model was analyzed to investigate a characteristic of seawater intrusion based on the previous simulated results of groundwater flow. The results showed the seawater moved as the range of $200{\sim}220m$ from the initial interface between seawater and groundwater toward the tunnel.

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Groundwater and Surface Water Hydrology in the Lake Rotorua Catchment, New Zealand, and Community Involvement with Lake Water Quality Restoration

  • White, Paul A.;Hong, Timothy;Zemansky, Gil;McIntosh, John;Gordon, Dougall;Dell, Paul
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2007년도 학술발표회 논문집
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    • pp.8-14
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    • 2007
  • Water quality in Lake Rotorua, New Zealand, deteriorated since the 1960s because of excessive phytoplankton growths due principally to increasing nitrogen and phosphorus in the lake waters. Nutrient concentrations in eight of the nine major streams feeding Lake Rotorua have increased since 1965. The groundwater system has a key role in the hydrology of the Lake Rotorua catchment and the groundwater system is probably the control on the time delay between intensification of agricultural land use and response of surface water quality. All major, and many minor streams, in the catchment are fed by springs. Two lithological units are most important to groundwater flow in the Lake Rotorua catchment: Mamaku Ignimbrite, erupted in about 200,000 years ago and Huka Formation sediments which filled the caldera left by the Mamaku Ignimbrite eruption. Rainfall recharge to groundwater in the groundwater catchment of Lake Rotorua is estimated as approximately 17300 L/s. A calibrated steady-state groundwater flow model estimates that approximately 11100 L/s of this flow discharges into streams and then into the lake and the balance travels directly to Lake Rotorua as groundwater discharge through the lake bed. Land use has impacted on groundwater quality. Median Total Nitrogen (TN) values for shallow groundwater sites are highest for the dairy land use (5.965 mg/L). Median TN values are also relatively high for shallow sites with urban-road and cropping land uses (4.710 and 3.620 mg/L, respectively). Median TN values for all other uses are in the 1.4 to 1.5 mg/L range. Policy development for Lake Rotorua includes defining regional policies on water and land management and setting an action plan for Lake Rotorua restoration. Aims in the action plan include: definition of the current nutrient budget for Lake Rotorua, identification of nutrient reduction targets and identification of actions to achieve targets. Current actions to restore Lake Rotorua water quality include: treatment of Tikitere geothermal nitrogen inputs to Lake Rotorua, upgrade of Rotorua City sewage plant, new sewage reticulation and alum dosing in selected streams to remove phosphorus.

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