• 제목/요약/키워드: Groundwater system

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순환식 지하수 수막시스템 그린하우스 난방을 위한 스탠딩컬럼웰 열교환율 산정 (Estimation of Heat Exchange Rate of Standing Column Well for Sustainable Groundwater Curtain for Greenhouse Heating)

  • 심병완;백승균;정성훈
    • 한국지열·수열에너지학회논문집
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    • 제20권2호
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    • pp.11-23
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    • 2024
  • In order to design a standing column well (SCW) for a sustainable groundwater curtain system for greenhouse heating, we conducted parameter sensitivity tests. These tests simulated the outlet temperature changes of the SCW in a groundwater recirculating greenhouse cultivation system. Our modeling considered ground thermal conductivity and hydrogeological conditions. Specifically, we examined several factors, including SCW length, enhanced thermal conductivity of the ground, and groundwater circulation rate. The simulation results indicated that there was not a significant difference in the heat exchange rate based on the characteristics of enhanced thermal conductivity. However, we anticipate a substantial difference in the case of varying SCW lengths. Therefore, we conclude that the simulation results are primarily influenced by conductive heat exchange values, as the circulating water remains at a constant groundwater level.

K-1 기지 주변 지질 구조와 지하수위 변동 특성 (Geological Structures and Their Relation to Groundwater System around K-1 Oil Stockpile)

  • 문상호;김영석;하규철;원종호;이진용
    • 자원환경지질
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    • 제43권2호
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    • pp.149-162
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    • 2010
  • K-1 유류비축기지는 인위적 지하 공동을 이용하기 때문에 주변 지하수계의 안정이 중요하다. 기지 주변의 지하수계 특성을 이해하기 위해 광역적 지하수 유동특성, 기지내 공간적 지하수위 분포 양상을 파악하였으며, 지하수 유동에 영향을 미치는 지질 요소를 검토하였다. 연구지역에서 지히수 유동에 크게 영향을 미칠 수 있는 지질구조적 특성은 2가지로서, 편마암-화강암 관입경계를 따라 재활성된 부분과 산성 암맥을 따라 발달한 단열 및 단층이다. 기지 내 4개 관측공들의 수위변동 양상을 검토한 결과, 대부분 강우와 지표수 유입 혹은 공동내 주입수에 의해 지하수위 변동이 영향을 받고 있는 것으로 나타났다. 이 연구에서는 기지 남쪽에 위치한 관정으로부터의 양수가 기지의 지하수위 변동에 미치는 영향에 대해 검토하였다. 산성 암맥을 따라 기지로부터 1.2km 남쪽에 위치한 지점에서의 양수작업은 관측 당시에 기지내 지하수위 변동에 영향을 미치지 않았으나, 모델링 결과에 의하면 $250\;m^3$/day 이상의 양수량으로 지속적인 양수작업이 진행되는 경우 지하수 시스템 안정을 위해 주의가 요구된다.

컨벌루션 기법을 이용한 제주도 표선유역 부정류 지하수 흐름 모델 개발 (Development of a Transient Groundwater Flow Model in Pyoseon Watershed of Jeju Island: Use of a Convolution Method)

  • 김승구;구민호;정일문
    • 한국환경과학회지
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    • 제24권4호
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    • pp.481-494
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    • 2015
  • Groundwater level hydrographs from observation wells in Jeju island clearly illustrate distinctive features of recharge showing the time-delaying and dispersive process, mainly affected by the thickness and hydrogeologic properties of the unsaturated zone. Most groundwater flow models have limitations on delineating temporal variation of recharge, although it is a major component of the groundwater flow system. Recently, a convolution model was suggested as a mathematical technique to generate time series of recharge that incorporated the time-delaying and dispersive process. A groundwater flow model was developed to simulate transient groundwater level fluctuations in Pyoseon area of Jeju island. The model used the convolution technique to simulate temporal variations of groundwater levels. By making a series of trial-and-error adjustments, transient model calibration was conducted for various input parameters of both the groundwater flow model and the convolution model. The calibrated model could simulate water level fluctuations closely coinciding with measurements from 8 observation wells in the model area. Consequently, it is expected that, in transient groundwater flow models, the convolution technique can be effectively used to generate a time series of recharge.

지하수위 변동량과 전기전도도 변동량을 이용한 강수 효과 분석 (Analysis of Precipitation Effects Using Groundwater Level and Electrical Conductivity Fluctuations)

  • 조원기;강동환;박경덕;김문수;신인규
    • 한국환경과학회지
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    • 제30권7호
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    • pp.519-527
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    • 2021
  • Moving average precipitation provides periodic precipitation patterns by solving precipitation irregularities. However, due to uncertain moving average periods, excessive data smoothing occurs, which limit the possibility to analyze groundwater levels in the short term. Nonetheless, groundwater level fluctuation can compensate these limitations as it can calculate appropriately for unit time and verify the effect of precipitation penetrated into groundwater in a short time period. In this study, the characteristics of groundwater level were evaluated using groundwater level fluctuation to compensate for limitations of groundwater level analysis using moving average precipitation. In addition, the groundwater quality was investigated using the electrical conductivity fluctuation. The study site was Hyogyo-ri, Yesan-si, Chungcheongnam-do. Four observation wells and an automated weather system were used. The correlation between groundwater level fluctuation and precipitation (Case 1) and the correlation between groundwater level and moving average precipitation (Case 3) were compared. In the analysis for 1 hour data, the correlation coefficient of Case 1 was higher than that of Case 3, and in the analysis for 1 day data, the correlation coefficient of Case 3 was higher than that of Case 1.

Characterization of Groundwater Colloids From the Granitic KURT Site and Their Roles in Radionuclide Migration

  • Baik, Min-Hoon;Park, Tae-Jin;Cho, Hye-Ryun;Jung, Euo Chang
    • 방사성폐기물학회지
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    • 제20권3호
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    • pp.279-296
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    • 2022
  • The fundamental characteristics of groundwater colloids, such as composition, concentration, size, and stability, were analyzed using granitic groundwater samples taken from the KAERI Underground Research Tunnel (KURT) site by such analytical methods as inductively coupled plasma-mass spectrometry, field emission-transmission electron microscopy, a liquid chromatography-organic carbon detector, and dynamic light scattering technique. The results show that the KURT groundwater colloids are mainly composed of clay minerals, calcite, metal (Fe) oxide, and organic matter. The size and concentration of the groundwater colloids were 10-250 nm and 33-64 ㎍·L-1, respectively. These values are similar to those from other studies performed in granitic groundwater. The groundwater colloids were found to be moderately stable under the groundwater conditions of the KURT site. Consequently, the groundwater colloids in the fractured granite system of the KURT site can form stable radiocolloids and increase the mobility of radionuclides if they associate with radionuclides released from a radioactive waste repository. The results provide basic data for evaluating the effects of groundwater colloids on radionuclide migration in fractured granite rock, which is necessary for the safety assessment of a high-level radioactive waste repository.

부산광역시 도심부 수리지질 특성과 지하지질 발달상태의 관련성 (Relationship between Hydrogeological Characteristics and Subsurface Geology in Central Busan Megacity)

  • 류상훈;함세영;차용훈;장성;정재형;손문;김기석
    • 지질공학
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    • 제17권3호
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    • pp.367-379
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    • 2007
  • 본 연구에서는 부산광역시 도심지역인 부산진구 양정동에서 동구 수정동까지의 주로 경부고속철도 터널 통과 예정지역 지반조사로부터 얻어진 시추공 자료, 지하수위 자료, 공내 유향 유속 자료 그리고 현장수리시험 분석 자료를 바탕으로 천부지층과 수리지질 특성의 관련성을 평가하였다. 지하수위(Y)와 지형고도(X)의 관계식은 Y=0.75X-7.00 이며, 상관계수는 0.75로서 비교적 높은 편이다. 매립층, 충적층, 풍화대의 두께와 지하수위의 상관성을 살펴본 결과, 풍화대의 두께(A)의 자연로그값과 지하수위(Y)의 상관성이 상대적으로 높게 나타났으며, 그 회귀식은 Y=exp(9.974A)-14.155과 같다. 지하수 유향 유속 결과, 지하수 유향은 대체적으로 남쪽-남서쪽으로 향하고 있으며, 이는 지역적인 지하수위 분포와 대체로 일치한다.

GWW를 이용한 지하수 자료 관리 (Application of Groundwater Software for Windows(GWW): An Overview)

  • 김윤영;이강근
    • 대한지하수환경학회지
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    • 제3권1호
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    • pp.9-14
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    • 1996
  • 지하수 관련 자료를 체계적으로 저장, 관리하기 위해 유엔에서 GWW를 개발 하였다. GWW는 지리정보시스템의 기본 원리를 이용하여 현장이나 실험실에서 얻어진 자료를 시간, 공간적으로 체계적인 관리를 수행하기 위해 PC Windows상에서 기본 내용과 데이타베이스를 구축하며 데이타 베이스를 다양한 수리지질학적 그래픽으로 출력할 수 있다. 여기서는 GWW의 이용방법에 관해 난지도 매립지에서의 관련자료들과 내장된 데이타 베이스를 이용하여 설명한다.

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불균질.이방성 대수층의 지하수 유동분석에 지구통계기법의 응용 (Application of Geostatistical Methods to Groundwater Flow Analysis in a Heterogeneous Anisotropic Aquifer)

  • 정상용;유인걸;윤명재;권해우;허선희
    • 지질공학
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    • 제9권2호
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    • pp.147-159
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    • 1999
  • 불균질.이방성 대수층에서의 지하수 유동분석을 위하여 지구통계학적 기법을 적용하였다. 연구지역은 대한광업진흥공사의 수문지질조사 사업지구인 전남 함평군 손불면 일대이며, 이 지역 관정의 표고와 지하수위의 선형회귀분석 결과 상관성이 매우 큰 것으로 나타났다. 정규크리깅과 코크리깅을 이용하여 작성된 지하수위 등고선도는 산간지역에서 차이가 크고, 서해에 인접한 구릉이나 평지에서는 큰 차이가 없다. 표고 등 고선도를 기준으로 2개의 지하수위 분포도를 비교해 보면 코크리깅에 의한 것이 정밀성이 더 큰 것으로 나타났다. 정규크리깅과 코크리깅에 의해 작성된 지하수위 등고선도에서 손불면의 지하수 유동상태를 검토해보면, 지형이 높은 산간지역에서 서해바다에 인접한 평야지역으로 지하수가 유동하고 있다. 불균질 이방성.대수층에서의 지하수 유동분석에 대한 지구통계학적 기법의 실효성을 검토하기 위하여 지하수 유동측정기(model 200 $GeoFlo^{R}$)를 이용해서 2개 지하수공내의 유향을 측정한 결과, 측정된 지하수 유향은 정규크리깅과 코크리깅의 지하수위 등고선도에서 추정된 지하수 유향과 대체로 일치하였다.

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QGIS를 이용한 경기도내 토양오염원의 중점관리 지점 선정 (Priority Management Using the QGIS for Sources of Contaminated Soil in Gyeonggi-do Province)

  • 손영금;김지영;박진호;임흥빈;김종수
    • 한국환경보건학회지
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    • 제46권1호
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    • pp.88-95
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    • 2020
  • Object: The purpose of this study was to select priority points for soil management using the location of groundwater and to suggest this method for soil contamination surveys. Method: Groundwater impact range was set to an area of 100 to 500 meters from the center point of agricultural groundwater wells. Data on industrial complex and factory areas, areas of stored or used ores and scrap metals, areas associated with waste and recycling, and traffic-related facilities areas were collected and checked for whether they fall within the groundwater impact range. Longitude and latitude coordinates of these data were mapped on the groundwater impact range using QGIS (Quantum Geographic Information System). Results: Considering the groundwater impact range, the points were selected as follows: 589 points were selected from 6,811 factories and 259 points were selected from 1,511 recycling business points. Traffic-related facility areas were divided between gas stations, bus depots, and auto mechanics. Thirty-four points were selected from 149 bus depots and 573 points were selected from 6,013 auto mechanic points. From the 2,409 gas station points, 323 were selected. Conclusion: Contaminated soil influences groundwater and crops, which can harm human health. However, soil pollution is not easily identified, so it is difficult to determine what has occurred. Pollution must be prevented beforehand and contaminated soil found. By selecting and investigating soil contamination survey points in consideration of the location of groundwater wells, we can safely manage water resources by preventing groundwater contamination in advance.

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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