• Title/Summary/Keyword: 지표수와 지하수의 연계

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A Study on Groundwater Flow Modeling in the Fluvial Aquifer Adjacent to the Nakdong River, Book-Myeon Area, Changwon City (창원시 북면 낙동강 주변 하성퇴적층의 지하수유동 모델링 연구)

  • Hamm Se-Yeong;Cheong Jae-Yeol;Kim Hyoung-Su;Hahn Jeong-Sang;Ryu Su-Hee
    • Economic and Environmental Geology
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    • v.37 no.5
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    • pp.499-508
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    • 2004
  • Changwon City first constructed riverbank filtration plants in Book-Myeon and Daesan-Myeon in Korea in the year 2001. This study evaluated hydrogeological characteristics and groundwater flow simulation between the Nakdong River and the fluvial aquifers adjacent to the river in Book-Myeon, Changwon City. The groundwater simulation calculated the influx rate from the Nakdong River and the fluvial aquifers to pumping wells through the riverbank filtration system. The groundwater flow model utilized drilling, grain size analysis, pumping test, groundwater level measurements, river water discharge and rainfall data. Hydraulic heads calculated by the steady-state model closely matched measured heads in pumping and observation wells. According to the transient flow model, using a total pumping amount of 14,000 $m^3$/day, the flux into the pumping wells from the Nakdong River accounts for 8,390 $m^3$/day (60%), 590 $m^3$/day (4%) is from the aquifer in the rectilinea. direction to the Nakdong River, and 5,020 $m^3$/day (36%) is from the aquifer in the parallel direction to the Nakdong River. The particle tracking analysis shows that a particle from the Nakdong River moves toward the pumping wells at a rate of about 1.85 m/day and a particle from the aquifer moves toward the pumping wells at a rate of about 0.75 m/day. This study contributes to surface water/groundwater management modeling, and helps in understanding, how seasonal change affects pumping rates, water quality, and natural recharge.

Investigation on Water Leakage-Induced Tunnel Structure and Ground Responses Using Coupled Hydro-Mechanical Analysis (수리역학 연계해석을 이용한 누수로 인한 터널 구조물 및 지반 거동의 분석)

  • Dohyun Park
    • Tunnel and Underground Space
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    • v.33 no.4
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    • pp.265-280
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    • 2023
  • Water leakage in tunnels is a defect that can affect tunnel stability and the ground movement by changing the stress and pore water pressure of the surrounding ground. Long-term or large-scale water leaks may lead to damage of tunnel structure and the surrounding environment, such as tunnel lining instability and ground surface settlement. The present study numerically investigated the effects of water leakage on the structural stability of a tunnel and the ground behavior. The tunnel was assumed to be under undrained conditions for preventing the inflow of the surrounding water and leaks occurred in the concrete lining after completion of the tunnel construction. A coupled hydro-mechanical analysis using a TOUGH-FLAC simulator developed in Python was conducted for assessing the leakage induced-behavior of the tunnel structure and ground under different conditions of the amount and location of water leak. Additionally, the effect of hydro-mechanical coupling terms on the results of coupled response was investigated and discussed.

Preliminary Experimental Result for Clarifying Sr Isotope Behaviour of Water due to Water-Rock Interaction (물-암석반응에 따른 물에서의 Sr동위원소의 거동에 대한 예비실험결과)

  • Lee, Seung-Gu;Kim, Jeong-Chan
    • Economic and Environmental Geology
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    • v.43 no.3
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    • pp.211-222
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    • 2010
  • A batch experiment was carried out to investigate a variation of Sr concentration and $^{87}Sr/^{86}Sr$ ratio in the solution by water-rock interaction. The experiments were conducted at room temperature using two kinds of granites (biotite granite and garnet-bearing granite), de-ionized water. surface water. Water/rock ratio was 1:1. For comparison, we also performed another experiment under water/rock condition of 10:1. Then, the concentration of the cations and anions in the solutions showed severe variation during water/rock interaction. However, after sometime, the $^{87}Sr/^{86}Sr$ ratio of the solution moved to the $^{87}Sr/^{86}Sr$ ratio of the rocks and showed relatively constant value. This suggests that the $^{87}Sr/^{86}Sr$ ratio between water and rock becomes to be stable faster than the elemental equilibration of the element in the solution, and is not affected by interaction condition. Therefore, $^{87}Sr/^{86}Sr$ ratio of the groundwater may be useful in calculating the mixing ratio between different aquifer.

A Study on the Development of Integrated Water Resources Management(IWRM) System based on ICT in Uzbekistan (우즈베키스탄 내 ICT기반의 통합물관리(IWRM) 시스템 구축방향에 대한 연구)

  • Lee, Sung Soo;PI, Wan Seop;Seo, Sang Won
    • Proceedings of the Korea Water Resources Association Conference
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    • 2020.06a
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    • pp.352-352
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    • 2020
  • 통합물관리 (IWRM; Integrated Water Resources Management)란 생태계의 지속가능성(sustainability)을 해치지 않으면서, 공평한 방법(equity)으로 경제·사회·복지를 극대화(efficiency) 할 수 있도록 물과 토지 및 관련 기타 자원들을 조화롭게 개발하고 처리하는 과정을 말한다. IWRM 패러다임은 전 세계적 및 국가별 물관리 상황에 따른 시대적 이슈에 따라 변천하고 있고 1992년 리우 정상회담 이후 물위기 극복을 위한 새로운 패러다임으로 정착, 물재해 심화에 따라 2000년대 물안보라는 국가 차원의 과제로 발전하였다. 이에 이미 전세계 국가의 68%이상이 도입중이며 모든 국가로 확산 중에 있다. 그러므로 본 연구에서는 향후 통합수자원관리 측면에서의 우즈베키스탄 내 업무와 환경을 분석하여 표준화된 수자원정보화 방향을 제시하고 통합물관리를 위한 통합물관리시스템을 개발하는 것을 목적으로 한다. 우즈베키스탄은 기본적으로 물관리 여건이 매우 불리한 물스트레스 국가로 분류되고 있다. 국가 내에서 필요로하는 대부분의 수자원이 양적으로 매우 부족하고, 강수량의 지역, 시기별 변동폭 역시 매우 크게 나타나고 있다. 또한 이용가능한 수자원을 작물재배가 가능한 시기에 농업용수로 80%이상을 취수하고 있어 심각한 물부족에 시달리고 있는 실정이다. 지정학적으로는 연강수량이 평균 400mm정도로 나타나고 있어 국내에서 생산되는 물 이외에는 국내를 통과하는 시르다리야, 아무다리야 강의 상류에 위치한 키르기즈스탄, 타지키스탄에서 생성된 물을 하천에서 취수하여 사용하고 있는 실정으로 제한된 수자원을 효율적, 합리적으로 이용하는 데 있어 관리기술의 개선이 필요하다. 수자원의 대부분은 수자원부에서 산하 관리조직을 통해 중앙에서 통제하에 관리하고 있으나 국가간, 지역별 용수배분, 갈등이 심하되고 있는 상태에 있으며 이러한 점을 해결하기 위한 상류-하류간 연계, 수량-수질간 연계, 지표수-지하수 연계 등을 위한 법적, 제도적 기반이 미흡한 상태이다. 이러한 우즈베키스탄 내 IWRM 도입의 필요성을 기반으로 통합물관리를 위한 시스템 구성요소를 도출하고 구축을 위해 고려해야 할 사항 및 발전방향을 본 연구를 통하여 제시하고자 한다.

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Water resources planning for the Sesan and Srepok river basin in Vietnam using DSS-2S based on MIKE Hydro Basin (MIKE Hydro Basin 기반 DSS-2S를 활용한 베트남 Sesan 및 Srepok 강 유역 수자원 계획 수립)

  • Choi, Byung Man;Ko, Ick Hwan;Kim, Jeongkon;Pi, Wan Seop;Oh, Yoon Keun
    • Proceedings of the Korea Water Resources Association Conference
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    • 2021.06a
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    • pp.43-43
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    • 2021
  • Sesan강과 Srepok강은 베트남, 캄보디아, 라오스가 공유하는 3S강 유역 (Sesan강, Srepok강, Sekong강)의 일부로 국제 공유하천으로 관리되고 있다. 3S강 유역은 Mekong강의 중요한 지류이며 Mekong강 유역의 상당 부분을 구성한다(Mekong강 유역 면적의 10%, 연간 총 유출량의 20%). 베트남에 속해 있는 Sesan강 유역면적은 11,255km2, Srepok강 유역면적은 18,162km2이다. Sesan강과 Srepok강의 상류는 베트남 중부 고원의 긴 산맥에 위치하고 있으며, 하류는 캄보디아에 위치해 있어 상·하류간 긴밀한 협력이 필요하다. Sesan강과 Srepok강 유역은 기후변화에 따른 홍수, 가뭄, 수력발전소 건설로 인한 유출량 변동에 따른 상·하류 분쟁, 사면침식 및 퇴적 등 많은 문제와 도전에 직면할 것으로 예측되고 있다. 본 연구에서는 World Bank의 "Viet Nam Mekong Integrated Water Resources Management (M-IWRM) Project의 일환으로 베트남 정부 차원에서 처음으로 구축한 수자원관리 의사결정지원시스템인 "DSS-2S"를 활용하여, Sesan-Srepok강 유역의 수자원 계획을 수립하였다. DSS-2S는 MIKE Hydro Basin을 기반으로 SWAT모델 등과 연계 하여 구축되었다. DSS-2S는 2S 유역의 모든 주요 하천과 지류를 반영하였으며. 여기에는 17개의 수력발전 댐과 주요 지류에서 용량이 3백만 m3 이상인 기타 저수지가 포함되었다. 이 보다 작은 용량의 저수지는 대표적인 저수지로 그룹화 되어 반영되었다. 기후변화 및 사회-경제적 발전계획 등을 반영하여, 2030년과 2050년을 목표연도로 생활, 공업, 농업, 관광, 유지용수 등 용수 수요를 추정하였다. 50% 및 85% 빈도의 공급 가능성을 고려하여 물 배분은 물 수요를 충족하고 지하수 개발 최소화를 기준으로 고려되었다. 분석 결과에 의하면 2S강 유역의 총 수자원은 32.2억 m3으로 그중 지표수자원은 29.2억 m3, 안정적으로 이용 가능한 지하수자원은 2.97억 m3으로 분석 되었으며, 지표수와 지하수 연계를 고려하면 전체 2S 강 유역에 물 부족하지는 않으나, 개별 공급 지점을 고려할 때 4월과 5월에 일부 지역에서 물 부족이 나타날 것으로 예측 된다. 장래 물 부족 해결을 위한 대안들을 제시하였으며, 본 성과는 베트남 중앙 정부의 장기수자원 종합계획 수립의 기본 자료로 활용 될 예정이다.

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

  • Cha, Kee-Uk;Kim, Woo-Gu;Shin, Young-Rho
    • Proceedings of the Korea Water Resources Association Conference
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    • 2008.05a
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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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Integrated Surface-groundwater Analysis in Jeju Island (제주 지역 지표수-지하수 연계 해석)

  • Kim, Nam-Won;Chung, II-Moon;Yoo, Sang-Yeon;Lee, Jeong-Woo;Yang, Sung-Kee
    • Journal of Environmental Science International
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    • v.18 no.9
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    • pp.1017-1026
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    • 2009
  • In Jeju island, the surface runoff characteristics are quite different from those of inland. Most of streams show dried characteristics by means of large portion of recharge which goes to the deep aquifer. For this reason, the accurate estimation of hydrologic components by using watershed model like SWAT is very difficult. On the other hand, the integrated SWAT-MODFLOW model is able to simulate the complex runoff structure including stream-aquifer interaction, spatial-temporal groundwater recharge and so on. The comprehensive results of Pyoseon region in Jeju island show that the amount of groundwater discharge to stream is very small, but it might be added to the discharge into the sea. Statistical analysis shows that SWAT-MODFLOW's results represent better than SWAT's. Also, SWAT-MODFLOW produces a reasonable water budget which shows a quite similar pattern of observed one. This result proves that the integrated SWAT-MODFLOW can be used as a proper tool for hydrologic analysis of entire Jeju island.

Comparison of Time Series of Alluvial Groundwater Levels before and after Barrage Construction on the Lower Nakdong River (낙동강 하류 하천구조물 건설 전후의 충적층 지하수위 시계열 특성 비교)

  • Kim, Gyoo-Bum;Cha, Eun-Jee;Jeong, Hae-Geun;Shin, Kyung-Hee
    • The Journal of Engineering Geology
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    • v.23 no.2
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    • pp.105-115
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    • 2013
  • Increasing the river cross-section by barrage construction causes rises in the average river water levels and discharge rates in the rainy season. The time series patterns for groundwater levels measured at 23 riverside monitoring wells along the lower Nakdong River are compared for two cases: before and after water-filling at the Changnyeong-Haman Barrage. Monthly average groundwater levels indicate a distinct increase in groundwater levels in the upstream riverside close to the barrage. River-water level management by barrage gate control in August, during the rainy season, resulted in a 0.1 m decrease in groundwater levels, while water-filling at the barrage in December caused a 1.3 m increase in groundwater levels. The results of hierarchical cluster analysis indicate that seven groundwater monitoring wells and river water levels were in the same group before barrage construction, but that this number increased to 14 after barrage construction. Principal component analysis revealed that the explanation power of two principal components corresponding to river fluctuation, PC1 and PC2, was approximately 82% before barrage construction but decreased to 45% after construction. This finding indicates that the effect of the river level component that contributes to change in groundwater level, decreases after barrage construction; consequently, other factors, including groundwater pumping, become more important. Continuous surveying and monitoring is essential for understanding change in the hydrological environment. Water policy that takes groundwater-surface water interaction into consideration should be established for riverside areas.

Assessment of Vulnerability for Groundwater Level by Coastal and Mountain Area in Korea (국내 연안 및 산간지역 지하수위 관리 취약성 평가)

  • Lee, Jae-Beom;Yang, Jeong-Seok;Kim, Geon;Kwak, Ye Ji
    • Proceedings of the Korea Water Resources Association Conference
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    • 2021.06a
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    • pp.270-270
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    • 2021
  • 안정적인 취수원의 역할을 할 수 있는 중·대규모의 하천이 없는 연안 및 산간지역의 경우 생활용수 등 각종 용수의 확보를 위하여 지하수자원을 활발히 이용하고 있다. 수문순환의 측면에서 대수층 내 지하수자원은 다양한 경로로 함양되는데, 주변에 물 교환이 활발히 발생하지 않는 연안 및 산간지역의 경우 지하수자원의 주된 함양원은 강수 형태로 내린 물이라고 볼 수 있다. 그러나 최근 전세계적으로 기후변화로 인한 강수패턴의 변화가 발생하고 있고, 특히 국내의 경우 연 총 강수량이 증가하나 무강우일수 및 무강우지속일수의 증가, 강우강도의 증가(기상청, 2018)와 토지이용특성 및 지표면 특성이 변화하면서 지표면 유출량이 증가함에 따라 수문순환의 불균형이 발생하고 있다. 이는 주된 취수원으로 지하수자원에 의존할 수 밖에 없는 연안 및 산간지역의 수자원 확보에 큰 위협이 될 수 있고, 미래 안정적인 수자원 확보가 어려운 상황에 직면할 수 있는 상태이다. 따라서 기존의 하천 위주의 유역 관리계획 수립에서 나아가 가뭄 발생 시 물 부족에 시달리고 있는 연안 및 산간지역의 수자원 관리 및 확보 계획 수립에 대한 요구가 증가하고 있다. 이에 본 연구에서는 안정적인 수자원 확보와 이를 위한 관리 계획의 사각지역에 놓여있는 국내 연안 및 산간지역의 수자원 관리 방안 수립을 위한 초석을 다지기 위하여, 연안 및 산간지역을 대상으로 지하수위 관리 취약성 평가 연구를 수행하였다. 연안 및 산간지역의 주된 취수원인 지하수자원의 주요 평가 인자로 지하수위를 선정하였고, 이에 영향을 미칠 수 있는 수문순환 요소와 인구, 토지이용 특성 등의 평가 인자를 선정하였다. 지표수-지하수 연계와 지역특성을 고려한 수자원 변동 특성을 분석하기 위하여 수문순환 요소간 상관관계를 기반으로 상호 영향성을 규명하였다. 또한 연구 지역의 시간적, 공간적 특성을 평가하기 위하여 공간특성 평가인자와 시간특성 평가 인자를 함께 고려하여 국내 연안 및 산간지역의 지하수위 관리 취약성 평가 연구를 수행하였다. 본 연구의 결과는 지하수자원에 의존할 수 밖에 없는 국내 연안 및 산간지역의 효율적인 수자원 관리 계획을 수립함에 있어 정량적 근거가 될 수 있을 것으로 기대한다.

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Application of OECD Agricultural Water Use Indicator in Korea (우리나라에 적합한 OECD 농업용수 사용지표의 설정)

  • Hur, Seung-Oh;Jung, Kang-Ho;Ha, Sang-Keun;Song, Kwan-Cheol;Eom, Ki-Cheol
    • Korean Journal of Soil Science and Fertilizer
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    • v.39 no.5
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    • pp.321-327
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    • 2006
  • In Korea, there is a growing competitive for water resources between industrial, domestic and agricultural consumer, and the environment as many other OECD countries. The demand on water use is also affecting aquatic ecosystems particularly where withdrawals are in excess of minimum environmental needs for rivers, lakes and wetland habits. OECD developed three indicators related to water use by the agriculture in above contexts : the first is a water use intensity indicator, which is expressed as the quantity or share of agricultural water use in total national water utilization; the second is a water stress indicator, which is expressed as the proportion of rivers (in length) subject to diversion or regulation for irrigation without reserving a minimum of limiting reference flow; and the third is a water use efficiency indicator designated as the technical and the economic efficiency. These indicators have different meanings in the aspect of water resource conservation and sustainable water use. So, it will be more significant that the indicators should reflect the intrinsic meanings of them. The problem is that the aspect of an overall water flow in the agro-ecosystem and recycling of water use not considered in the assessment of agricultural water use needed for calculation of these water use indicators. Namely, regional or meteorological characteristics and site-specific farming practices were not considered in the calculation of these indicators. In this paper, we tried to calculate water use indicators suggested in OECD and to modify some other indicators considering our situation because water use pattern and water cycling in Korea where paddy rice farming is dominant in the monsoon region are quite different from those of semi-arid regions. In the calculation of water use intensity, we excluded the amount of water restored through the ground from the total agricultural water use because a large amount of water supplied to the farm was discharged into the stream or the ground water. The resultant water use intensity was 22.9% in 2001. As for water stress indicator, Korea has not defined nor monitored reference levels of minimum flow rate for rivers subject to diversion of water for irrigation. So, we calculated the water stress indicator in a different way from OECD method. The water stress indicator was calculated using data on the degree of water storage in agricultural water reservoirs because 87% of water for irrigation was taken from the agricultural water reservoirs. Water use technical efficiency was calculated as the reverse of the ratio of irrigation water to a standard water requirement of the paddy rice. The efficiency in 2001 was better than in 1990 and 1998. As for the economic efficiency for water use, we think that there are a lot of things to be taken into considerations to make a useful indicator to reflect socio-economic values of agricultural products resulted from the water use. Conclusively, site-specific, regional or meteorogical characteristics as in Korea were not considered in the calculation of water use indicators by methods suggested in OECD(Volume 3, 2001). So, it is needed to develop a new indicators for the indicators to be more widely applicable in the world.