• 제목/요약/키워드: Groundwater

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부산 석대 폐기물 매립장 일대의 지하수 오염 (Groundwater Contamination at the Seokdae Waste Landfill Area of Pusan City)

  • 정상용
    • 대한지하수환경학회지
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    • 제2권1호
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    • pp.1-8
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    • 1995
  • 매립장에서의 쓰레기는 주변 지역에 지하수오염, 악취, 유독가스 발생 등 큰 문제를 일으키고 있다. 본 연구에서는 최근에 부산시에서 만 6년 동안 사용해 왔었던 석대 폐기물 매립장 주변의 지하수 오염실태를 파악하고, 그 오염을 최소화할 수 있는 방안 연구를 목표로 매립장 주변의 우물과 시추공 내의 지하수위, 수질, 대수층 특성 등을 조사하고, 또 주변 하천의 수질, 매립장 일대의 지하수 분포 및 유동 상태 등을 연구하였다. 그 결과 지하로 침투하는 순수 침출수량은 일 평균 약 520 m$^3$로 추정되며, 침출수에 의한 지하수 오염범위가 매립장 중심에서 약 1-1.5 km 정도 까지에 이른다. 오염물질도 중금속류를 비롯한 기타 유해 성분들이 다량 존재한다. 앞으로 이 일대의 지하수를 보전 및 관리하기 위해서는 매립장과 지하수오염물질이 확산되고 있는 곳에 감시정을 여러개 설치하여 지하수위와 수질을 주기적으로 조사하고, 채수정을 설치하여 오염된 지하수를 뽑아내어 침출수 처리장에서 처리한 후 하천에 방류하여야 한다. 아울러 지하수 오염물질이 확산되고 있는 매립장 주변 지역에 차수벽 설치가 요구된다.

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해외사례조사를 통한 우리나라 지하수 관리의 개선방향 (Improvement Plan for Groundwater Management in Korea by Examining Overseas Cases)

  • 김민수;정교철;이정우;정일문
    • 지질공학
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    • 제30권3호
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    • pp.215-222
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    • 2020
  • 본 연구에서는 미국, 일본, 유럽 등 해외의 지하수 관리 사례를 조사하여 향후 우리나라 지하수 관리 개선방향을 제시하였다. 미국에서는 지하수자원 프로그램(GWRP)이 국지적-권역별로 운영된다. 일본에서는 적정지하수 이용을 관리하기 위해 소규모, 중규모 및 대규모 유역에 따라 서로 다른 지하수자원 관리프로그램이 수행되었다. 유럽에서는 지하수가 지표수와 동일하게 평가되며, 유역 단위로 지표수와 지하수를 통합 관리하고 있다. 우리나라에서는 국가차원에서 지하수 개발가능량을 하향식으로 지정하고 관리하지만 미국과 일본에서는 소규모 지역 단위에서 대규모 유역까지 범위를 확장하며 관리하는 차이가 있다. 또한 지하수 자원의 지속 가능성을 평가하려면 지속적인 지하수 관측과 조사, 데이터 분석, 지하수 개발 우선순위 결정 등을 포함하는 역동적 지하수 활용 프로그램을 운영해야 한다.

부산 해안지역의 물의 라돈 농도와 지하수 유출 특성 (Characterizing Groundwater Discharge and Radon Concentration in Coastal Waters, Busan City)

  • 옥순일;함세영;이용우;차은지;김상현;김인수;김부근
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제16권5호
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    • pp.53-66
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    • 2011
  • Groundwater which infiltrated in recharge areas discharges in the forms of evapotranspiration, baseflow to streams, groundwater abstraction and eventually flows into the sea. This study characterized radon-222 concentration and electrical conductivity (EC) in coastal groundwater discharge, well groundwater, Ilkwang Stream water, and seawater in the coastal area of Busan Metropolitan City and subsequently estimated groundwater discharge rate to the sea. The median value of Rn-222 concentration is highest in well groundwater (18.36 Bq/L), and then decreases in the order of coastal groundwater discharge (15.92 Bq/L), Ilkwang Stream water (1.408 Bq/L), and seawater (0.030 Bq/L). The relationship between Rn-222 concentration and EC values is relatively strong in well groundwater and then in seawater. However, the relationship is not visible between coastal groundwater discharge and Ilkwang Stream water. The groundwater discharge rate to the sea is estimated as $3,130m^3$/day by using radon mass budget model and $16,788m^3$/day by using Darcy's law.

보 건설이 주변지역 지하수 흐름계에 미치는 영향 (Analyzing the Effect of a Weir Construction on the Groundwater Flow System)

  • 정수정;구민호
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제17권3호
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    • pp.39-48
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    • 2012
  • Visual MODFLOW, a three dimensional groundwater flow model, was used to analyze effects of a weir construction in an alluvial stream on the nearby groundwater flow system. A hypothetical conceptual model was developed to investigate how the groundwater level and the water budget could change after a weir construction depending on the location of tributary streams. A site example, dealing with the Juksan weir installed in the Yeongsan River, was also demonstrated to predict the effects of the weir construction. Model results show that impacts of a weir construction on the groundwater flow system greatly vary depending on how far a tributary is located and whether it is located downstream or upstream from the weir. Therefore, consideration of the location of tributaries in planning the location of a weir could effectively minimize the impacts of a weir construction on the groundwater flow system. It is also demonstrated that model results are highly dependent upon how the model is dealing with small tributaries and agricultural drainage channels, which can be easily found nearby the main streams, acting as major water bodies for groundwater discharge. The model for the Juksan area shows that the weir construction will change the direction of groundwater flow in some areas, leading to changes of groundwater quality and interaction of the Yeongsan River to the aquifer from a gaining to a losing stream. The model also predicted the areas where rise of groundwater level caused by the Juksan weir could adversely affect plant growth, and thereby suggested installing new drainage channels as a countermeasure to drawdown the groundwater level.

지표수지하수 통합모형을 이용한 무심천 유역의 지하수 개발가능량 산정 (Estimating Exploitable Groundwater Amount in Musimcheon Watershed by Using an Integrated Surface Water-Groundwater Model)

  • 정일문;이정우;김남원
    • 자원환경지질
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    • 제44권5호
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    • pp.433-442
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    • 2011
  • 우리나라의 지하수관리는 연간 지하수 함양량을 기반으로 수행되어 왔으나 지히수 함양량과 지표수-지하수 상호작용은 시공간적으로 변동하는 양이므로 지속적인 모니터링과 동적인 분석을 통해 지하수자원의 지속가능성이 평가되어야 할 것이다. 본 연구에서는 무심천 유역을 대상으로 지표수-지하수 통합해석 모형인 SWAT-MODFLOW를 이용하여 다양한 지하수 양수 시나리오(무양수 및 현 이용량의 1~3배)에 대한 수문성분 해석을 수행하였다. 현 이용량으로 양수하는 경우가 비교적 지속가능한 개발량으로 판단되었는데 이때 연간 기저유출량은 16%, 대수층 저류량은 27 mm 감소하는 것으로 나타났다. 지하수의 지속가능성을 평가하기 위해서는 지하수 이용에 따른 수문학적, 생태학적, 사회 경제적, 기술적 영향을 평가하는 총체적 접근법이 도입되어야 하며 이를 위해서는 물리적인 분석과 함께 지역사회의 합의 또한 중요한 의사결정 방식이라고 판단되었다.

우라닐 가수분해물의 용해도 연구 (Solubility Studies of Uranyl Hydrolysis Precipitates)

  • 박용준;표형렬;김원호;전관식
    • 대한화학회지
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    • 제40권9호
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    • pp.599-606
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    • 1996
  • 서로 다른 pH 조건에서 생성한 우라닐 가수분해물의 용해도에 미치는 지하수 성분의 영향을 측정하였다. 우라닐 가수분해 침전물 pH 6.4 및 9.7에서 제조하였다. 편마암 층에서 채취한 지하수로부터 무기 및 유기콜로이드를 제거한 분리지하수, 채취지하수의 분석성분과 동일한 조성을 가지는 합성지하수, 그리고 0.1 M NaCl 수용액에서의 용해도에 미치는 pH의 영향을 측정하였다. 또한 채취지하수에서 상대적으로 다량 존재하는 음이온 및 양이온의 영향을 측정하였다. 지하수에서의 우라닐 가수분해 침전물의 용해도는 0.1 M NaCl 용액에서보다 약 100배 정도 큰 것으로 나타났다. X-선 회절분석 결과는 높은 pH에서 제조한 우라닐 가수분해 침전물이 낮은 pH에서 제조한 것보다 낮은 결정화도와 높은 용해도를 보였다.

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지하수위 자료를 이용한 제주도 지하수계의 가뭄 영향 평가 (Evaluation of Drought Effect on Groundwater System using Groundwater Level Data in Jeju Island)

  • 송성호;이병선;최광준;김진성;김기표
    • 한국환경과학회지
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    • 제23권4호
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    • pp.637-647
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    • 2014
  • Quantitative assessment of groundwater level change under extreme event is important since groundwater system is directly affected by drought. Substantially, groundwater level fluctuation reveals to be delayed from several hours to few months after raining according to the aquifer characteristics. Groundwater system in Jeju Island would be also affected by drought and almost all regions were suffered from a severe drought during summer season (July to September) in 2013. To estimate the effect of precipitation to groundwater system, monthly mean groundwater levels in 2013 compared to those in the past from 48 monitoring wells belong to be largely affected by rainfall(Dr) over Jeju Island were analyzed. Mean groundwater levels during summer season recorded 100 mm lowered of precipitation compared to the past 30 years became decreased to range from 2.63 m to 5.42 m in southern region compared to the past and continued to December. These decreasing trends are also found in western(from -1.21 m to -4.06 m), eastern(-0.91 m to -3.24 m), and northern region(from 0.58 m to -4.02 m), respectively. Moreover, the response of groundwater level from drought turned out to be -3.80 m in August after delaying about one month. Therefore, severe drought in 2013 played an important role on groundwater system in Jeju Island and the effect of drought for groundwater level fluctuation was higher in southern region than other ones according to the regional difference of precipitation decrease.

분포형 물수지 모델(WetSpass-M)을 이용한 삽교천 상류 유역에서의 월별 지하수 함양량 산정 (Evaluation of Groundwater Recharge using a Distributed Water Balance Model (WetSpass-M model) for the Sapgyo-cheon Upstream Basin)

  • 안효원;하규철
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제26권6호
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    • pp.47-64
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    • 2021
  • In this study, the annual and monthly groundwater recharge for the Sapgyo-cheon upstream basin in Chungnam Province was evaluated by water balance analysis utilizing WetSpass-M model. The modeling input data such as topography, climate parameters, LAI (Leaf Area Index), land use, and soil characteristics were established using ArcGIS, QGIS, and Python programs. The results showed that the annual average groundwater recharge in 2001 - 2020 was 251 mm, while the monthly groundwater recharge significantly varied over time, fluctuating between 1 and 47 mm. The variation was high in summer, and relatively low in winter. Variation in groundwater recharge was the largest in July in which precipitation was heavily concentrated, and the variation was closely associated with several factors including the total amount of precipitation, the number of days of the precipitation, and the daily average precipitation. This suggests the extent of groundwater recharge is greatly influenced not only by quantity of precipitation but also the precipitation pattern. Since climate condition has a profound effect on the monthly groundwater recharge, evaluation of monthly groundwater recharge need to be carried out by considering both seasonal and regional variability for better groundwater usage and management. In addition, the mathematical tools for groundwater recharge analysis need to be improved for more accurate prediction of groundwater recharge.

지하수 부존량 평가와 관리에 대한 소고 (A Note on Estimating and Managing Groundwater Reserves)

  • 이병선;박종환;명우호;손주형;이상화;심규성;송성호
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제23권6호
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    • pp.28-36
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    • 2018
  • This study was conducted to estimate groundwater reserves within a designated depth. Three methods were applied to one representative county in southern Gyeongsang province, South Korea, to estimate the groundwater reserves in the aquifers. Estimated amounts of groundwater reserves in the region ranged from $20.2{\times}10^9m^3$ to $68.7{\times}10^9m^3$ (average $37.9{\times}10^9m^3$). Groundwater recharge obtained with a recharge ratio of 16.6% was $1.1{\times}10^9m^3/year$. Exploitable groundwater with an assumption of decadal-cycle minimal rainfall of 977.0 mm/year was approximated as 72% ($0.8{\times}10^9m^3/year$) of the total replenished water by recharge. The volume of recharge and exploitable water accounted for only 1.1% and 0.8% of groundwater reserves, respectively, which indicates substantial capacity of the reservoir to supply groundwater in an event of unexpected droughts. Nonetheless, each groundwater well should strictly comply with its allocated pumping rate to avoid alluvial groundwater depletion.

주성분분석 및 군집분석을 이용한 제주도 지하수위 변동 유형 분류 및 특성 비교 (Classification and Characteristic Comparison of Groundwater Level Variation in Jeju Island Using Principal Component Analysis and Cluster Analysis)

  • 임우리;함세영;이충모
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제27권6호
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    • pp.22-36
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    • 2022
  • Water resources in Jeju Island are dependent virtually entirely on groundwater. For groundwater resources, drought damage can cause environmental and economic losses because it progresses slowly and occurs for a long time in a large area. Therefore, this study quantitatively evaluated groundwater level fluctuations using principal component and cluster analyses for 42 monitoring wells in Jeju Island, and further identified the types of groundwater fluctuations caused by drought. As a result of principal component analysis for the monthly average groundwater level during 2005-2019 and the daily average groundwater level during the dry season, it was found that the first three principal components account for most of the variance 74.5-93.5% of the total data. In the cluster analysis using these three principal components, most of wells belong to Cluster 1, and seasonal characteristics have a significant impact on groundwater fluctuations. However, wells belonging to Cluster 2 with high factor loadings of components 2 and 3 affected by groundwater pumping, tide levels, and nearby surface water are mainly distributed on the west coast. Based on these results, it is expected that groundwater in the western area will be more vulnerable to saltwater intrusion and groundwater depletion caused by drought.