• 제목/요약/키워드: groundwater wells

검색결과 508건 처리시간 0.023초

갑천 유역의 지하수 이용 특성 분석 (Analysis of Groundwater Use in Kap-cheon Basin)

  • 홍성훈;김정곤
    • 한국수자원학회논문집
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    • 제41권5호
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    • pp.463-471
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    • 2008
  • 본 연구의 목적은 갑천 유역의 물순환 분석 시스템 구축 및 효과적인 지하수 관리에 활용하기 위하여 지하수 이용량을 분석하고 그 특성을 파악하는 것이다. 이를 위하여 지하수이용실태조사 자료를 토대로 관정개수와 이용량의 누적밀도에 의해 형성되는 관계를 분석하고, 유역을 대표할 수 있는 총 이용량 및 관정 개소수를 파악하였다. 추출된 관정의 이용량 세부정보들에 따라 이용량의 공간적 분포 특성을 파악하고, 유역별 함양량과 지하수 이용량을 비교함으로써 갑천 유역의 지하수자원 관리의 적정성을 평가하였다. 평가결과에 따르면, 약 25%의 관정이 전 지하수 이용량의 90%를 대표하는 것으로 나타났다. 또한, 대전 도심지 소유역의 지하수 이용량은 유역 유출 모형에서 평가된 해당 유역의 지하수 함양량보다 1.4배$\sim$11.1배 상회하고 있으며, 주요 하천 유역별로는 대전천 및 유등천이 갑천 유역의 함양량 대비 이용량 비율이 1.9배$\sim$2.3배 높아 이들 지역의 지하수 적정관리가 시급한 실정으로 평가되었다. 본 연구 결과들은 향후 갑천 유역의 지하수 이용량에 따른 지하수 유동 체계, 하천 유출량 그리고 물순환 변화에 대한 분석에 기초자료로 활용될 것으로 기대된다.

지하수 중 탄소원으로 fumarate 주입과 유전자분석을 통한 질산성질소 자연저감도 평가 (Evaluation of Natural Attenuation by Addition of Fumarate as Carbon Source and Gene Analysis in Groundwater Sample)

  • 박선화;김현구;김소현;이민경;이경미;김영;김문수;김태승
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제19권4호
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    • pp.62-69
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    • 2014
  • In the results of monitoring nitrate concentration in more than 8,000 groundwater wells around agro-livestock, the average and maximum nitrate concentration was 9.4 mg/L and 101.2 mg/L, respectively. Since about 31% of the monitoring wells was exceed the quality standard for drinking water, nitrate control such as remediation or source regulation is required to conserve safe-groundwater in South Korea. Typical nitrate-treatment technologies include ion exchange, reverse osmosis, and biological denitrification. Among the treatment methods, biological denitrification by indigenous microorganism has environmental and economic advantages for the complete elimination of nitrate because of lower operating costs compared to other methods. Major mechanism of the process is microbial reduction of nitrate to nitrite and nitrogen gas. Three functional genes (nosZ, nirK, nirS) that encode for the enzyme involved in the pathway. In this work, we tried to develop simple process to determine possibility of natural denitrification reaction by monitoring the functional gene. For the work, the functional genes in nitrate-contaminated groundwater were monitored by using PCR with specific target primers. In the result, functional genes (nosZ and nirK) encoding denitrification enzymes were detected in the groundwater samples. This method can help to determine the possibility of natural-nitrate degradation in target groundwater wells without multiplex experimental process. In addition, for field-remediation application we selected nitrate-contaminated site where 200~600 mg/L of nitrate is continuously detected. To determine the possibility of nitrate-degradation by stimulated-natural attenuation, groundwater was sampled in two different wells of the site and nitrate concentration of the samples was 300 mg/L and 616 mg/L, respectively. Fumarate for different C/N ratio was added into microcosm bottles containing the groundwater to examine denitrification rate depending on carbon concentration. In the result, once 1.5 times more than amount of fumarate stoichiometry required was added, the 616 mg/L of nitrate and 300 mg/L of nitrate were completely degraded in 8 days and 30 days. The nitrite, byproduct of denitrification process, was also completely degraded during the experimental period.

경상북도 영천지역의 지하수위 회복 예측 수치 모델링 (Numerical Modeling on the Prediction of Groundwater Recovery in the Youngchun Area, Kyungbook Province)

  • 이병대;추창오;이봉주;조병욱;함세영;임현철
    • 자원환경지질
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    • 제36권6호
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    • pp.431-440
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    • 2003
  • 도수로터널 굴착으로 인하여 하강되었던 주변 지역의 지하수위 회복을 모델링하였다. 터널 굴착 후, 라이닝 전ㆍ후를 기준으로, 먼저 정상류 상태에서 라이닝 전의 배출량과 지하수위를 보정하고, 그 다음 부정류 상태에서 라이닝과 그라우팅 후 터널내의 배출량을 점차적으로 줄여 가면서 모델링하였다. 정상류 상태의 모델링에서 터널 컨덕턴스가 25∼90% 감소될 경우, 배출량은 5.5∼82.7% 감소되는 것으로 예측되었고, 지하수위는 8∼72.4% 회복되는 것으로 예측되었다. 부정류 상태의 지하수위 회복시기 예측 모델링에서 컨덕턴스가 75% 감소될 경우, 대부분 관측공들은 20년 내외에서 회복되는 것으로 예측되었고, 지하수위가 70m 이상인 일부 관측공들은 회복되는 것이 불가능하였다. 컨덕턴스 90% 감소 시에는 모든 관측공들이 15년 이내에 회복되는 것으로 예측되었다.

MODFLOW를 이용한 유류오염지역 지하수 유동 및 오염물질 이동 평가

  • 전권호;문철환;이진용;이재영
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2003년도 추계학술발표회
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    • pp.536-539
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    • 2003
  • This study area has been contaminated by oils. To identify contaminated ranges and to assess the possibility of contamination dispersion, monitoring wells were installed and slug test, field soil permeability test, automatic or manual measurement of groundwater table, and groundwater quality analyses in field and laboratory were performed. In addition, a groundwater modeling program was used to assess the possibility of oil contamination dispersion, based on field data and groundwater quality data. The results showed that concentration of oil contaminants in groundwater have been decreased by dispersion and adsorption.

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지하수 폐공 원상복구 개선방안

  • 정하익;임종진;유준;김상근;오인규;홍승서
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2003년도 추계학술발표회
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    • pp.244-248
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    • 2003
  • Unused well and improperly abandoned wells are a significant threat to groundwater quality. If abandoned wells is not properly filled with material, it can directly channel to flow contaminated and surface water into subsurface and groundwater. The abandonment process is over viewed and the method of filling with impermeable and permeable material is presented for the purpose of proper well abandonment work.

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강변여과 취수정의 간섭효과와 하천수 비율에 대한 해석적 평가 (Analytical Evaluation of Interference and Ratio of River Water at Riverbank Filtration Pumping Wells)

  • 박남식
    • 한국수자원학회논문집
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    • 제47권8호
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    • pp.685-691
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    • 2014
  • 강변여과는 하천 인근에 다수의 관정을 설치하여 하천수의 수질 개선을 추구하는 기술이다. 그런데 다수의 관정이 인접해 있는 경우 관정간의 상호간섭 현상으로 인하여 취수량에 영향을 미친다. 강변 여과 관정의 경우에는 관정이 관망으로 연결되기 때문에 간섭효과의 요인에는 지하수위 강하량 외에도 유량변화에 따른 관망 수두손실이 포함된다. 간섭효과는 취수정으로 유입되는 하천수와 배후 지하수의 비율에도 영향을 미친다. 본 연구에서는 강변여과시스템의 대수층과 관망흐름을 통합해석하는 기법을 이용하여 복수 관정의 간섭효과와 하천수 비율을 산정하는 방법을 제시하고 실제에 가까운 가상의 강변여과시스템에 적용하였다. 관정 가동 패턴에 따라 취수량은 5% 이상 차이가나고 배후지하수 유입비율도 30~40% 범위로 10% 이상 차이가 날 수 있는 것으로 나타났다.

지하수 유동 영향에 따른 지하수 이용 열펌프 시스템의 대수층 온도 변화 예측 모델링 (Simulation of aquifer temperature variation in a groundwater source heat pump system with the effect of groundwater flow)

  • 심병완;송윤호
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2005년도 춘계학술대회
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    • pp.701-704
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    • 2005
  • Aquifer Thermal Energy Storage (ATES) can be a cost-effective and renewable geothermal energy source, depending on site-specific and thermohydraulic conditions. To design an effective ATES system having influenced by groundwater movement, understanding of thermo hydraulic processes is necessary. The heat transfer phenomena for an aquifer heat storage are simulated using FEFLOW with the scenario of heat pump operation with pumping and waste water reinjection in a two layered confined aquifer model. Temperature distribution of the aquifer model is generated, and hydraulic heads and temperature variations are monitored at the both wells during 365 days. The average groundwater velocities are determined with two hydraulic gradient sets according to boundary conditions, and the effect of groundwater flow are shown at the generated thermal distributions of three different depth slices. The generated temperature contour lines at the hydraulic gradient of 0.00 1 are shaped circular, and the center is moved less than 5m to the groundwater flow direction in 365 days simulation period. However at the hydraulic gradient of 0.01, the contour center of the temperature are moved to the end of boundary at each slice and the largest movement is at bottom slice. By the analysis of thermal interference data between two wells the efficiency of the heat pump system model is validated, and the variation of heads is monitored at injection, pumping and no operation mode.

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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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유류오염 지하수 정화를 위한 양수처리법 적용시 지하수위 변화 및 수처리장치의 효율평가 (Efficiency Assessment of Wastewater Treatment Plant and Groundwater Level by Pump and Treat Technology Applied for Petroleum Contaminated Site)

  • 조장환;김준호;박민규;김태형;최연수;최상일
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제19권3호
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    • pp.33-38
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    • 2014
  • This study was performed to evaluate the applicability of pump and treat technology as well as to identify the changes of groundwater level by continuous pumping at the petroleum contaminated site. A total of 9 monitoring wells were installed at the site and the contaminant concentrations, TPH, benzene, toluene, ethylbenzene and xylene, of groundwater were measured. With the results of the groundwater monitoring, a total of 9 wells were set up for pumping contaminated groundwater in 3 locations. The waste water treatment facility with a capacity of $10m^3/hr$ was installed in the site and operated for about 1 year. The concentrations of the contaminated groundwater from the 3 pumping wells were exceeded groundwater regulation for benzene and TPH. However, the effluent concentration of benzene and TPH was under the regulation showing the maximum level of 0.011 mg/L and 1.2 mg/L during the operation periods. Groundwater levels were decreased by continuous pumping and those were not recovered during the operation period. Groundwater levels of PW-1,2, PW-3,4,5,6 and PW-7,8,9 were decreased about 5 m, 0.7 m, 2 m, respectively. The hydraulic conductivity (K) of the region of PW-1,2, PW-3,4,5,6 and PW-7,8,9 was estimated to be $6.143{\times}10^{-5}cm/sec$, $2.675{\times}10^{-5}cm/sec$, $1.198{\times}10^{-4}cm/sec$. Groundwater level was seemed to be affected not by hydraulic conductivity but by morphological effect. These results show that the pump and treat technology has high applicability for the restoration of petroleum contaminated groundwater but needs continuous monitoring to prevent rapid groundwater drawdown.

서울 시내 궁궐 수원의 수질과 유동 특성 (Characteristics of Quality and Flow of Water Resources at Palaces in Seoul Metropolitan)

  • ;이재민;우남칠;김연태;이강진
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제16권2호
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    • pp.61-76
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    • 2011
  • This study was objected to provide suggestions for best management practices to restore the cultural and historical values of the wells in Palaces as well as their water qualities. Water resources in the five Palaces in Seoul Metropolitan, including Gyeongbokgung, Changdeokgung, Changgyeonggung, Jongmyo Shrine, and Deoksugung, were surveyed for their physical flows and chemical compositions from April to July in 2010. Ground waters in most wells were found at depths within 5 m from the ground surface, showing typical water-table aquifer systems. Hydraulic gradients indicate water resources in Gyeongbokgung, Changdeokgung, and Changgyeonggung flowing toward south, and toward east in Deoksugung area. Especially, water-level fluctuation data at S-10 in Deoksugung implied the influence of groundwater discharge facility. In Jongmyo Shrine, water was not detected in wells, indicating the water level was lower than the well depth. Based on the water chemistry and stable isotope analyses, water resources and their qualities appeared to be formed by the water-rock interaction along the groundwater paths. S-10 (Deoksugung) and S-14 (Changgyeonggung) samples were contaminated with nitrate ($NO_3$) in levels of higher than Korean drinking water standard, 10 mg/L as $NO_3$-N, but once in four sampling campaigns. In the situation that water resources in Palaces still maintain natural characteristics, the materials that will be used for the restoration and improvement of the Palace water supplies should be carefully selected not to disturb the natural integrity. In addition, because the wells are located in the center of metropolitan area, a systematic monitoring should be applied to detect and to manage the potential impacts of underground construction and various pollution sources.