• 제목/요약/키워드: groundwater flow analysis

검색결과 384건 처리시간 0.027초

방사형집수정의 수평집수관에서 지질특성과 취수량의 상관관계 분석 (Analysis of the Correlation between Geological Characteristics and Water Withdrawals in the Laterals of Radial Collector Well)

  • 김태형;정재훈;김민;오세형;이재성
    • 지질공학
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    • 제24권2호
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    • pp.201-215
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    • 2014
  • 본 연구에서는 창원시 강변여과수 개발사업(2단계)에서 얻어진 자료들을 이용하여 대수층의 수리전도도와 방사형집수정의 수평집수관에서 산출되는 유량과의 상관관계를 규명하고자 하였다. 연구지역인 낙동강 중하류 모래자갈층에서 수평적으로 채취한 미고결 퇴적물의 시료를 이용하여 경험식에 의한 수리전도도를 산정하였다. 여러 경험식을 이용하여 연구지역에서 수리전도도를 산정한 결과, Beyer식에 의한 수리전도도가 가장 적합한 것으로 판정되었다. 산정된 수리전도도는 0.083 ~ 0.264 cm/s의 범위, 평균 0.159 cm/s로 나타내고 있어 연구지역의 대수층 특성은 모래자갈층에 투수성이 양호한 것으로 나타났다. 산정된 수리전도도와 실측자료에 의한 스크린 내 지하수의 유입속도 및 유량과의 상관관계를 분석하고자 회귀분석을 실시하였다. 회귀분석 결과, 수리전도도와 지하수의 유입속도 및 유량은 약 72 %의 높은 상관관계를 가지는 것으로 나타났고, 각 변수들 간에 실측자료와의 검증에서도 약 72 %가 일치하는 것으로 분석되어 선형 회귀식은 높은 적합성을 나타내었다. 본 연구의 결과로서 선형 회귀식을 이용하여 수리전도도에 의한 방사형집수정의 수평집수관에서 산출되는 유량의 추정이 가능하고, 연구지역과 유사한 대수층에서 적용이 가능할 것이라고 사료된다.

위상기하 분석법을 이용한 단열계 특성 정량화의 소개 (Review of Quantification of Fracture Characteristics Based on Topological Analysis)

  • 손효록;김영석
    • 지질공학
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    • 제31권1호
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    • pp.1-17
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    • 2021
  • 암체 내에 발달하는 단열계는 지반의 특성뿐만 아니라 유체의 유동특성을 제어하기 때문에 이들을 평가하는 것은 매우 중요하다. 따라서 이들을 정량화하기 위한 다양한 시도가 있어왔다. 그러나 기하학적 분석을 통해 획득한 정량적 매개변수인 단열밀도만으로는 단열계의 진화를 설명하기 어렵고, 단열계의 연결패턴 같은 암석 내 단열의 공간적 관계를 정량화하기 어렵다. 따라서 최근 기존에 이뤄지던 기하학적 분석과 함께 위상기하 분석을 통한 단열계의 특성화 필요성이 대두되고 있다. 그러나 암체에의 다양한 적용성에도 불구하고, 아직 국내에서는 단열계의 위상기하 분석이 지질매체에 적용되어 연구된 적은 거의 없다. 따라서 본 연구에서는 최근 단열연구 분야에서 주목받고 있는 단열계 위상기하 분석의 정의와 개념, 위상기하 분석과 관련된 그래프이론, 그리고 이들을 적용하는 방법에 대해 간략히 소개하고자 한다. 이러한 위상기하학적 연구방법이 단열계의 분석에 사용된다면 암체 내 단열을 따라 흐르는 지하수나 석유 저류암의 유동특성과 단열계의 진화를 정량화하는데 유용하게 사용될 수 있다. 또한 방사성폐기물처분장과 같이 유체의 유동특성이 중요한 주요 시설물의 부지선정 등에 유용하게 활용될 수 있을 것이다.

제주지역의 지하수 유동해석에 관한 연구 (A Study on Groundwater flow analysis of in Jeju Island)

  • 안승섭;이남훈;이병철;이증석
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2009년도 학술발표회 초록집
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    • pp.1950-1954
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    • 2009
  • 본 연구에서는 제주도 지역에서 지속가능한 범위 내에서 지하수의 효율적인 개발과 이용을 위하여 대수층내 에서 발생하는 지형 및 지질 특성인자의 상호 관련성을 규명하고, 화산도서유역에서의 지하수 유동해석을 통하여 적용가능성을 파악하고 지하수의 효과적인 관리와 이용에 적합한 방법을 제시하는데 목적을 두고 있다. 화산도서유역에서의 지하수 유동해석을 위하여 지하수 함양량은 물수지 분석에 의해 산정하였으며, 대상유역에 유한차분모델인 GMS-MODFLOW를 중심으로 지하수두 분포를 산정하고 실제 관측수도와 비교 분석하였다. 또한 분석대상 유역에 지하수 관정의 양수기간에 따른 지하수두 변동포를 계산하였다. 분석 결과 분석관정에서 일시에 양수할 경우 유속벡터가 초기의 정류상태에 대한 유속벡터와 다소 큰 차이가 있는 결과를 나타내고 있으나, 이후로 안정된 수두결과를 보이고 있으며, 지하수 유동경로 각 방향으로 분석되어 유출되는 것으로 판단된다.

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Behavior of double lining due to long-term hydraulic deterioration of drainage system

  • Shin, Jong-Ho;Lee, In-Keun;Joo, Eun-Jung
    • Structural Engineering and Mechanics
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    • 제52권6호
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    • pp.1257-1271
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    • 2014
  • The hydraulic deterioration of the drainage system in tunnel linings is one of the main factors governing long-term lining-ground interactions during the lifetime of tunnels. Thus, in the design procedure of a tunnel below the groundwater table, the possible detrimental effects associated with the hydraulic deterioration should be addressed. Hydraulic deterioration in double-lined tunnels can occur because of reasons such as clogging of the drainage layer and drain-pipe blockings. In this study, the coupled mechanical and hydraulic interactions between linings due to drain-pipe blockings are investigated using the finite-element method. A double-lined structural model incorporating hydraulic behavior is developed to represent the coupled structural and hydraulic behavior between the linings and drainage system. It is found that hydraulic deterioration hinders flow into the tunnel, causing asymmetric development of pore-water pressure and consequent detrimental effects to the secondary lining.

Calculation of Topographic Index with Geographic Information System

  • Kim, Sang-Hyun;Ham, Kun-Yeun
    • Korean Journal of Hydrosciences
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    • 제8권
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    • pp.85-95
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    • 1997
  • The multiple flow direction algorithm to calculate the spatial variation of the saturation tendency, I. e. topographic index, is integrated into the Geographic Information System, GRASS. A procedure is suggested to consider the effect of a tile system on calculating the topographic index. A small agricultural subwatershed ($3.4\;\textrm{km}^2$) is used for this study. The impact of a tile system on the groundwater table can be effectively considered by the Laplace's equation to the DEM. The analysis shows that a tile system has a high degree of saturation to compared to the case without tile drainage, and the predicted riparian area is well fitted to the actual watershed condition. A procedure is suggested to consider a tile system's effect on calculating the topographic index.

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결정론적 기법을 이용한 산사태 위험지 예측 (Prediction of Potential Landslide Sites Using Determinitstic Model)

  • 차경섭;장병욱;우철웅;김성필
    • 한국농공학회논문집
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    • 제47권6호
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    • pp.37-45
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    • 2005
  • Almost every year, Korea has been suffered from serious damages of lives and properties, due to landslides that are triggered by heavy rains in monsoon season. In this paper, we systematized the physically based landslide prediction model which consisted of 3 parts, infinite slope stability analysis model, groundwater flow model and soil depth model. To evaluate its applicability to the prediction of landslides, the data of actual landslides were plotted on the predicted areas on the GIS map. The matching rate of this model to the actual data was $84.8\%$. And the relation between hydrological and land form factors and potential landslide were analyzed.

고준위방사성폐기물 처분시스템의 압축 벤토나이트 완충재의 포화 수리전도도 추정 (A Prediction of Saturated Hydraulic Conductivity for Compacted Bentonite Buffer in a High-level Radioactive Waste Disposal System)

  • 박승훈;윤석;권상기;김건영
    • 방사성폐기물학회지
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    • 제18권2호
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    • pp.133-141
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    • 2020
  • 고준위방사성폐기물의 처분은 고심도 암반내에 처분시스템을 구축하는 심층 처분방법이 고려된다. 심층 처분은 처분용기, 완충재, 뒷채움재, 근계암반의 설계 요소인 공학적방벽과 천연 방벽으로 구성된다. 공학적방벽 중에서 벤토나이트 완충재는 암반으로부터 유입되는 지하수 흐름을 최소화하고 핵종 유출을 저지하는 기능을 한다. 지하수 유입으로 인한 완충재의 수리전도도 특성 규명은 처분장 공학적방벽의 안정성 및 건전성에 대한 성능 평가에 있어 중요한 사안이다. 본 연구에서는 경주 벤토나이트를 이용하여 다양한 건조밀도와 온도 조건에 따라 포화 수리전도도 실험을 수행하였으며, 120개의 실험 결과를 다중 회귀 분석을 통해 수리전도도 추정 모델을 제시하였다. 실험 결과에서는 건조밀도가 커질수록 수리전도도가 감소하는 경향이 나타났다. 또한, 온도가 증가할수록 수리전도도가 증가하였다. 이러한 실험 결과들을 종합한 다중 회귀 분석 결과에서는 수리전도도 추정식의 결정계수(R2)가 0.93으로 높게 나타났다. 본 연구에서 제시된 수리전도도 추정식은 벤토나이트 완충재의 성능과 연관된 건조밀도와 온도의 영향을 고려하여 처분시스템의 공학적방벽 설계에 활용 될 것으로 판단된다.

감마선 분광법을 이용한 지하수 중의 226Ra 분석 (Analysis of 226Ra in the Groundwater Using the Gamma-ray Spectroscopy)

  • 서범경;이길용;윤윤열;이근우
    • 분석과학
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    • 제16권1호
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    • pp.39-47
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    • 2003
  • 시료 전처리가 필요 없는 감마선 분광분석법을 이용하여 지하수 중의 라듐 ($^{226}Ra$) 분석을 위한 측정법을 확립하였다. 방사평형된 딸핵종을 이용한 라듐의 분석 시 가장 문제가 되는 대기 중 라돈 딸핵종에 의한 바탕계수는 측정함 내부로 질소가스를 흘려주므로써 해결하였고, 라듐과 그 딸핵종들 사이의 방사평형 과정에서 생성된 라돈가스의 용기 외부로의 누출은 밀폐된 알루미늄 용기를 사용함으로써 방지할 수 있었다. 또한 측정용기 내부의 공기층에 의한 방사능 변화정도를 조사하기 위하여 임의로 공기층을 만들어 측정한 결과, 물 속에 녹은 라돈의 공기층으로의 발산에 의한 방사능 변화정도는 통상적인 측정오차인 5% 범위 이내였다. 측정 시 검출기 주위로 질소가스를 흘려줌으로서 대기 중 라돈 딸핵종에 의한 간섭을 제거하였고, 검출하한값을 0.02 Bq/L로 낮출 수 있었다. 이는 최근 US Environmental Protection Agency (EPA)에 의하여 제안된 지하수 중의$^{226}Ra$ Maximum Contaminant Level (MCL)인 0.74 Bq/L보다 충분히 작은 값으로서 감마선 분광법을 이용하여 지하수 중의 라듐을 방사능 농도를 정확히 결정할 수 있다는 것을 확인하였다.

Field Studios of In-situ Aerobic Cometabolism of Chlorinated Aliphatic Hydrocarbons

  • Semprini, Lewts
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2004년도 총회 및 춘계학술발표회
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    • pp.3-4
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    • 2004
  • Results will be presented from two field studies that evaluated the in-situ treatment of chlorinated aliphatic hydrocarbons (CAHs) using aerobic cometabolism. In the first study, a cometabolic air sparging (CAS) demonstration was conducted at McClellan Air Force Base (AFB), California, to treat chlorinated aliphatic hydrocarbons (CAHs) in groundwater using propane as the cometabolic substrate. A propane-biostimulated zone was sparged with a propane/air mixture and a control zone was sparged with air alone. Propane-utilizers were effectively stimulated in the saturated zone with repeated intermediate sparging of propane and air. Propane delivery, however, was not uniform, with propane mainly observed in down-gradient observation wells. Trichloroethene (TCE), cis-1, 2-dichloroethene (c-DCE), and dissolved oxygen (DO) concentration levels decreased in proportion with propane usage, with c-DCE decreasing more rapidly than TCE. The more rapid removal of c-DCE indicated biotransformation and not just physical removal by stripping. Propane utilization rates and rates of CAH removal slowed after three to four months of repeated propane additions, which coincided with tile depletion of nitrogen (as nitrate). Ammonia was then added to the propane/air mixture as a nitrogen source. After a six-month period between propane additions, rapid propane-utilization was observed. Nitrate was present due to groundwater flow into the treatment zone and/or by the oxidation of tile previously injected ammonia. In the propane-stimulated zone, c-DCE concentrations decreased below tile detection limit (1 $\mu$g/L), and TCE concentrations ranged from less than 5 $\mu$g/L to 30 $\mu$g/L, representing removals of 90 to 97%. In the air sparged control zone, TCE was removed at only two monitoring locations nearest the sparge-well, to concentrations of 15 $\mu$g/L and 60 $\mu$g/L. The responses indicate that stripping as well as biological treatment were responsible for the removal of contaminants in the biostimulated zone, with biostimulation enhancing removals to lower contaminant levels. As part of that study bacterial population shifts that occurred in the groundwater during CAS and air sparging control were evaluated by length heterogeneity polymerase chain reaction (LH-PCR) fragment analysis. The results showed that an organism(5) that had a fragment size of 385 base pairs (385 bp) was positively correlated with propane removal rates. The 385 bp fragment consisted of up to 83% of the total fragments in the analysis when propane removal rates peaked. A 16S rRNA clone library made from the bacteria sampled in propane sparged groundwater included clones of a TM7 division bacterium that had a 385bp LH-PCR fragment; no other bacterial species with this fragment size were detected. Both propane removal rates and the 385bp LH-PCR fragment decreased as nitrate levels in the groundwater decreased. In the second study the potential for bioaugmentation of a butane culture was evaluated in a series of field tests conducted at the Moffett Field Air Station in California. A butane-utilizing mixed culture that was effective in transforming 1, 1-dichloroethene (1, 1-DCE), 1, 1, 1-trichloroethane (1, 1, 1-TCA), and 1, 1-dichloroethane (1, 1-DCA) was added to the saturated zone at the test site. This mixture of contaminants was evaluated since they are often present as together as the result of 1, 1, 1-TCA contamination and the abiotic and biotic transformation of 1, 1, 1-TCA to 1, 1-DCE and 1, 1-DCA. Model simulations were performed prior to the initiation of the field study. The simulations were performed with a transport code that included processes for in-situ cometabolism, including microbial growth and decay, substrate and oxygen utilization, and the cometabolism of dual contaminants (1, 1-DCE and 1, 1, 1-TCA). Based on the results of detailed kinetic studies with the culture, cometabolic transformation kinetics were incorporated that butane mixed-inhibition on 1, 1-DCE and 1, 1, 1-TCA transformation, and competitive inhibition of 1, 1-DCE and 1, 1, 1-TCA on butane utilization. A transformation capacity term was also included in the model formation that results in cell loss due to contaminant transformation. Parameters for the model simulations were determined independently in kinetic studies with the butane-utilizing culture and through batch microcosm tests with groundwater and aquifer solids from the field test zone with the butane-utilizing culture added. In microcosm tests, the model simulated well the repetitive utilization of butane and cometabolism of 1.1, 1-TCA and 1, 1-DCE, as well as the transformation of 1, 1-DCE as it was repeatedly transformed at increased aqueous concentrations. Model simulations were then performed under the transport conditions of the field test to explore the effects of the bioaugmentation dose and the response of the system to tile biostimulation with alternating pulses of dissolved butane and oxygen in the presence of 1, 1-DCE (50 $\mu$g/L) and 1, 1, 1-TCA (250 $\mu$g/L). A uniform aquifer bioaugmentation dose of 0.5 mg/L of cells resulted in complete utilization of the butane 2-meters downgradient of the injection well within 200-hrs of bioaugmentation and butane addition. 1, 1-DCE was much more rapidly transformed than 1, 1, 1-TCA, and efficient 1, 1, 1-TCA removal occurred only after 1, 1-DCE and butane were decreased in concentration. The simulations demonstrated the strong inhibition of both 1, 1-DCE and butane on 1, 1, 1-TCA transformation, and the more rapid 1, 1-DCE transformation kinetics. Results of tile field demonstration indicated that bioaugmentation was successfully implemented; however it was difficult to maintain effective treatment for long periods of time (50 days or more). The demonstration showed that the bioaugmented experimental leg effectively transformed 1, 1-DCE and 1, 1-DCA, and was somewhat effective in transforming 1, 1, 1-TCA. The indigenous experimental leg treated in the same way as the bioaugmented leg was much less effective in treating the contaminant mixture. The best operating performance was achieved in the bioaugmented leg with about over 90%, 80%, 60 % removal for 1, 1-DCE, 1, 1-DCA, and 1, 1, 1-TCA, respectively. Molecular methods were used to track and enumerate the bioaugmented culture in the test zone. Real Time PCR analysis was used to on enumerate the bioaugmented culture. The results show higher numbers of the bioaugmented microorganisms were present in the treatment zone groundwater when the contaminants were being effective transformed. A decrease in these numbers was associated with a reduction in treatment performance. The results of the field tests indicated that although bioaugmentation can be successfully implemented, competition for the growth substrate (butane) by the indigenous microorganisms likely lead to the decrease in long-term performance.

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침투력이 터널 막장의 안정성에 미치는 영향 연구 - 모형실험을 중심으로 - (Effect of Seepage Forces on the Tunnel Face Stability - Assessing through Model Tests -)

  • 이인모;안재훈;남석우
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2001년도 봄 학술발표회 논문집
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    • pp.41-48
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    • 2001
  • In this study, two factors are simultaneously considered for assessing tunnel face stability: one is the effective stress acting on the tunnel face calculated by upper bound solution; and the other is the seepage force calculated by numerical analysis under the condition of steady-state groundwater flow. The seepage forces calculated by numerical analysis are compared with the results of a model test. From the results of derivations of the upper bound solution with the consideration of seepage forces acting on the tunnel face, it could be found that the minimum support pressure for the face stability is equal to the sum of effective support pressure and seepage pressure acting on the tunnel face. Also it could be found that the average seepage pressure acting on the tunnel face is proportional to the hydrostatic pressure at the same elevation and the magnitude is about 22% of the hydrostatic pressure for the drainage type tunnel and about 28% for the water-proof type tunnel. The model tests performed with a tunnel model had a similar trend with the seepage pressure calculated by numerical analysis. From the model tests it could be also found that the collapse at the tunnel face occurs suddenly and leads to unlimited displacement.

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