• 제목/요약/키워드: shallow groundwater

검색결과 199건 처리시간 0.033초

Source identification and Pathway analysis of Nitrate contamintation in "Cultural village", Jeungpyeong

  • 전성천;이강근;배광옥;정형재
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2002년도 총회 및 춘계학술발표회
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    • pp.254-257
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    • 2002
  • The purposes of this research are to identify the source and to analyze the pathway of nitrate contamination in "cultural village", Jeungpyeong. In order to examine recharge processes and flow pattern that closely related to the influent of nitrate contaminant, the flow field was simulated and the oxygen and hydrogen stable isotopes were analyzed. The nitrogen isotope was used to delineate contaminant sources. The shallow groundwater was mainly composed of precipitation, but leakage of domestic water and sewage contributed to the recharge. Nitrate contaminants were possibly from the leakage of sewage and animal waste. The nitrate concentration decreased due to dilution by low concentration water.ion water.

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Delineation of Groundwater and Estimation of Seepage Velocity Using High-Resolution Distributed Fiber-Optic Sensor

  • Chang, Ki-Tae;Pham, Quy-Ngoc
    • 한국지반환경공학회 논문집
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    • 제16권6호
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    • pp.39-43
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    • 2015
  • This study extends the Distributed Temperature Sensing (DTS) application to delineate the saturated zones in shallow sediment and evaluate the groundwater flow in both downward and upward directions. Dry, partially and fully saturated zones and water level in the subsurface can be recognized from this study. High resolution seepage velocity in vertical direction was estimated from the temperature data in the fully saturated zone. By a single profile, water level can be detected and seepage velocity in saturated zone can be estimated. Furthermore, thermal gradient analysis serves as a new technique to verify unsaturated and saturated zones in the subsurface. The vertical seepage velocity distribution in the recognized saturated zone is then analyzed with improvement of Bredehoeft and Papaopulos' model. This new approach provides promising potential in real-time monitoring of groundwater movement.

Evaluation of geochemical processes affecting groundwater chemistry in Namwon, Korea

  • Kim, Kang-Joo;Natarajan Rajmohan;Kim, Hyung-Jung;Kim, Suk-Hwi;Hwang, Gab-Soo;Cho, Min-Joe;Lee, Sang-Ho
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2004년도 임시총회 및 추계학술발표회
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    • pp.334-337
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    • 2004
  • Groundwater chemistry in Namwon area, Korea, was investigated to understand the contribution of geochemical processes on groundwater chemistry. For this study, a total of 279 groundwater samples were collected from 93 wells distributed over the study area. Higher concentrations of major ions are generally encountered in the shallow alluvial wells, suggesting that these chemicals are originated from the surface contamination sources. Mass balance analysis based on reaction stoichiometry reveals that the water chemistry is regulated by three major chemical processes: weathering of silicate/ carbonate minerals, input of C1/SO$_4$ salts, and nitrate generating processes. The results show that mineral weathering is the most dominating factor regulating the groundwater chemistry. However, the groundwaters with the higher salt concentration indicate the larger mineral weathering effect, suggesting that some part of the mineral weathering effect is also associated with the anthropogenic activities such as limes applied to the cultivated lands, carbonates (CaCO$_3$) in the cement materials.

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물 암석 반응을 고려한 KURT 지하수의 지구화학적 특성 (Geochemical Characterization of Rock-Water Interaction in Groundwater at the KURT Site)

  • 류지훈;권장순;김건영;고용권
    • 방사성폐기물학회지
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    • 제10권3호
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    • pp.189-197
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    • 2012
  • KURT 지하수의 지구화학적 특성을 조사하기 위하여 단열충전광물과 지하수의 지구화학적 성분이 조사되었다. KURT내의 시추공들로부터 얻어진 시추코아로부터 방해석(calcite), 일라이트(illite), 로먼타이트(laumonite), 녹니석(chlorite), 녹염석(epidote), 몬모릴로나이트(montmorillonite), 카올리나이트(kaolinite) 및 일라이트와 스멕타이트(smectite)의 혼합층상광물 등이 감정되었다. 시추공 DB-1, YS-1, YS-4에서 채취한 대부분의 지하수는 pH 8이상의 알칼리 환경을 보여주었으며 YS-1을 제외한 두 관측공의 전기전도도는 약 2$200{\mu}S/cm$를 나타냈으며 이들 시추공에서 천부지하수는 $Ca-HCO_3$$Ca-Na-HCO_3$ 유형 이였으며 심부 250m이하에서는 $Na-HCO_3$ 유형을 나타냈다. DB-1 공의 심부지하수에서 낮은 용존산소량(DO)와 Eh값의 감소를 측정하였으며 이는 환원환경을 지시한다. KURT의 지하수 시료의 $Cl^-$ 이온의 농도는 5 mg/L 이하이며 전 샘플링구간에서 커다란 변화 없이 일정하게 나타났다. 이러한 현상은 KURT 지역의 천부와 심부지하수가 혼합(mixing)되어 $Cl^-$의 농도가 깊이에 따라 큰 변화가 없는 것으로 해석된다. 지하수 시료의 ${\delta}^{18}O$${\delta}D$ 분석 값은 각각 -10.4~-8.2‰과 -71.3~-55.0‰의 범위로 지하수가 순환수 기원임을 보여준다. 긴 순환경로를 거친 심부지하수의 수소, 산소 동위원소 값은 천부지하수에 비해 감소하며 이러한 값은 일반적으로 높은 불소농도를 동반하였다. 이는 불소함량이 높은 지하수가 물-암석 반응에 의해 생성되었음을 보여준다. KURT 지역에서 채취한 지하수의 $^{14}C$를 이용한 연대측정분석에서 지하수의 체류시간(residence time)이 약 2,000~6,000년으로 측정되었다. 이러한 체류시간은 KURT 지역의 화강암에 존재하는 지하수가 다른 유럽의 화강암지역(예, 스트리파 지역, 스웨덴)보다 상대적으로 지하수의 연령이 오래되지 않은 것으로 측정되었다.

충북 영동지역 지하수의 수리지화학적 특성 및 질산염 오염 특성 (Hydro-geochemical Nature and Nitrates Contamination Charecters of Groundwater in the Youngdong, Chungbuk Province)

  • 이인경;최상훈
    • 자원환경지질
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    • 제45권1호
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    • pp.23-30
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    • 2012
  • 농업지역인 충북 영동 지역 지하수의 지화학적 특성과 질산염의 기원을 규명하기 위하여 지화학 및 질소동위원소 연구가 수행되었다. 지하수의 pH는 평균 7.2 (6.0~8.2)로 약산성 내지 약알칼리성으로 나타났다. 지하수의 평균 전기전도도, 산화환원전위 및 용존산소량은 각각 369 ${\mu}S/cm$ (70~729 ${\mu}S/cm$), 165.6 mV (29-383.2 mV), 4.3 mg/L(1.8~8.0 mg/L)이다. 지하수 내 양이온을 함량이 높은 순으로 나열하면, $Ca^{2+}$>$Na^{2+}$>$Mg^{2+}$>$K^{2+}$이고, 음이온의 경우는 ${HCO_3}^-$>${NO_3}^-$>${SO_4}^{2-}$>$Cl^-$>$F^-$이다. 연구지역 지하수의 대부분은 물-암석과의 반응으로 기인된 Ca-$HCO_3$ 유형으로 나타났으며, Ca-Cl 유형 (2.5%) 과 Na-$HCO_3$ (2.5%) 유형은 농업활동 등의 영향으로 전이된 것으로 밝혀졌다. 지하수 내 질산성 질소의 함량은 10.2 mg/l~26.9 mg/l 범위로 검출되어 오염이 우려되는 것으로 밝혀졌다. 지하수 내 질산성 질소의 기원을 파악하기 위한 질소 동위원소 분석 결과, 질산성 질소의 동위원소비 (${\delta}^{15}N_{-}NO_3$)는 1.9‰~19.4‰ (평균 10.1‰)로 측정되었으며, 동위원소비에 따른 질산염의 기원은 축사의 동물 분뇨나 농지에 시비된 유기물 비료임을 나타낸다.

하천-충적대수층계의 강변여과수를 열원으로 이용하는 지하수 열펌프 시스템의 계절별 입구온도와 효율성 평가 (Seasonal Variations of EWT and COP of GWHP System Using the Bank Infilterated Water from Stream-Alluvial Aquifer System)

  • 한찬;전재수;윤운상;한혁상;한정상
    • 한국지열·수열에너지학회논문집
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    • 제3권2호
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    • pp.39-51
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    • 2007
  • Unconsolidated and permeable alluvial deposit composed of sand and gravel is distributed along the fluvial plain at the Iryong study area. Previous studies on the area show that a single alluvial well can produce at least 1,650m3d-1 of bank infilterated shallow groundwater(BIGW) from the deposit. This study is aimed to evaluate and simulate the influence that seasonal variation of water levels and temperatures of the river have an effect on those of BIGW under the pumping condition and also to compare seasonal variation of COPs when indirectly pumped BIGW or directly pumped surface water are used for a water to water heat pump system as an heat source and sink using 3 D flow and heat transport model of Feflow. The result shows that the magnitude influenced to water level of BIGW by fluctuation of river water level in summer and winter is about 48% and 75% of Nakdong river water level separately. Seasonal change of river water temperature is about $23.7^{\circ}C$, on other hand that of BIGW is only $3.8^{\circ}C$. The seasonal temperatures of BIGW are ranged from minimum $14.5^{\circ}C$ in cold winter(January) and maximum $18.3^{\circ}C$ in hot summer(July). It stands for that BIGW is a good source of heat energy for heating and cooling system owing to maintaining quite similar temperature($16^{\circ}C$) of background shallow groundwater. Average COPh in winter time and COPc in summer time of BIGW and surface water are estimated about 3.95, 3.5, and about 6.16 and 4.81 respectively. It clearly indicates that coefficient of performance of heat pump system using BIGW are higher than 12.9% in winter time and 28.1% in summer time in comparision with those of surface water.

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지열펌프 구동에 의한 지중 온도 분포 변화 모델링 연구 (Numerical Simulation for the Subsurface Temperature Distribution Disturbed by Heat-Pump Operation)

  • 신지연;배광옥;이강근
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2006년도 추계학술대회
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    • pp.40-43
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    • 2006
  • Public demand for the heat pump system as a next generation energy equipment is increasing for its eco-friendly and cost-effective advantage. Many researches have been concentrated on how to calculate and develop its own efficiency, while the possible effect of the heat pump operation on the whole subsurface temperature distribution is relatively less considered, During the current study, subsurface temperature disturbance caused by seasonal surface temperature cycle in Busan area and general W-tube heat pump operation is simulated in 3-dimensional heterogeneous medium. It shows that subsurface deeper than 10m from the surface remains nearly unchanged throughout the 4 seasons and groundwater convect ion in highly permeable layer near the surface acts like a main path of heat plume from heat pump system, This implies the significance of detail descript ion in shallow sedimentary layer or highly permeable layer which plays an important role on the regional flow advection and heat transfer. Also, the effect of groundwater convection increases when the arrangement of the 2 injection pipes and 2 extract ion well is maintained parallel to groundwater flow. Therefore, more careful and detail investigation is required before installation and operation of heat pump system that it may not cause any possible change of microbial ecosystem in the shallow subsurface environment or 'contamination of temperature' for groundwater use as well as the loss of efficiency of the equipment itself. This can also help to design the optimized grouting system for heat pump.

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집중호우시 사면 붕괴의 특성 및 토층 심도와 지하수변동에 따른 사면 안정성 해석 (Characteristics of Slope Failure Due to Local Downpour and Slope Stability Analysis with Changing Soil Depth and Groundwater Level)

  • 백용;권오일;김승현;구호본
    • 지질공학
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    • 제15권1호
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    • pp.57-66
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    • 2005
  • 국내에서는 매년 집중호우에 의하여 사면 붕괴 및 산사태가 발생하고 있다. 특히, 최근의 집중강우는 국지성 및 게릴라성 강우가 대부분이다. 본 연구에서는 집중호우에 의하여 붕괴된 현장의 특성을 분석하고, 토층의 심도와 지하수면의 변화에 따른 사면의 안정성을 해석한다. 본 연구에 사용된 자료는 집중호우시 붕괴된 절토사면 조사 자료와 일반 국도변 1,372개의 현장 조사자료이다. 토층의 붕괴 심도와 지하수 변동이 사면의 안정성에 미치는 영향에 대해서는 FLAC-SLOPE(ITASCA사)을 이용하여 분석을 실시하였다. 연구결과에 의하면 국내 사면붕괴의 주요 형태는 표층유실 및 표층붕괴 등 천부 파괴가 주를 이루고 있으며, 지하수면과 토층 심도 변화에 따라 사면의 안정성이 변화하는 것으로 나타났다.

계층분석법(AHP)과 GIS를 이용한 고양시 일대의 지하수오염 관리우선순위 평가 (Priority Assessment for Groundwater Contamination Management Using Analytic Hierarchy Process (AHP) and GIS Approach)

  • 이명진;현윤정;김영주;황상일
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제18권5호
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    • pp.26-38
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    • 2013
  • In this study, priority for groundwater contamination management was assessed based on regional vulnerability in Goyang-si area, Gyonggi-do, Korea using analytic hierarchy process (AHP) and geographic information system (GIS). We proposed a concept for regional vulnerability to groundwater contamination with using socio-environmental vulnerability factors, which can be classified into three properties including regional hydrogeological property, contamination property, and groundwater use property. This concept is applied to Goyang-si area. For AHP analysis, an expertise-targeted survey was conducted. Based on the survey, a total of 10 factors (criteria) and corresponding weights for regional vulnerability assessment were determined. The result shows that regional contamination property is the most weighted factor among the three property groups (hydrogeological property: contamination property: groundwater use property = 0.3: 0.4: 0.3). Then, database layers for those factors were constructed, and regional vulnerability to groundwater contamination was assessed by weighted superposition using GIS. Results show that estimated regional vulnerability score is ranged from 22.7 to 94.5. Central and western areas of Goyang-si which have groundwater tables at shallow depths and are mainly occupied by industrial and residential areas are estimated to be relatively highly vulnerable to groundwater contamination. Based on assessed regional vulnerability, we classified areas into 4 categories. Category 1 areas, which are ranked at the top 25% of vulnerability score, take about 2.8% area in Goyang-si and give a high priority for groundwater contamination management. The results can provide useful information when the groundwater management authority decide which areas should be inspected with a high priority for efficient contamination management.

지하수ㆍ토양의 매체별 상관성평가를 통한 토양오염저감예측

  • 이민효;윤정기;김문수;노회정;이길철;이석영
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2002년도 총회 및 춘계학술발표회
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    • pp.183-186
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    • 2002
  • The objective of this study is to predict behavior of a contaminant plume and concentration of contaminants in soil through tile relations between the concentrations of contaminants in groundwater and in soil on the shallow sandy aquifer contaminated with petroleum hydrocarbons. The current state of the plume and its fate in the study area was simulated by using the MODFLOW-RT3D model and geochemical parameters of grounwater had been monitored and measured during 3 years (1999~2001). The relations between the concentrations of contaminants in each medium were taken from the investigation of site characterization conducted in 1999. Simulation results showed the center of the plume would migrate 407m twenty years later. At that time, the concentration would be decreased down to about 26 mg/$\ell$(93%). In comparison TEX concentration in the groundwater with that in the soil, the value of correlation coefficient (r=0.876) was as high as it could be used. Based on the high r-value, the linear equation was obtained from regression analysis. The results of model simulation by RT3D engine showed that the highest TEX concentration in the groundwater would be 58.8 mg/$\ell$ 16 years later, and then the TEX concentration in soil would be below the alarming level (80 mg/kg) of regulation criteria.

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