• Title/Summary/Keyword: 지하배수로

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밀양강 중류부 하천지형 발달과 선사$\cdot$고대인의 거주환경

  • 최정민;윤순옥;황상일
    • Proceedings of the KGS Conference
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    • 2003.11a
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    • pp.8-12
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    • 2003
  • 범람원은 홍수시 하천의 유량이 급격하게 증가해서 하천의 운반물질인 부유 하중이 하도를 넘어 하천 양안에 범람하여 퇴적되면서 형성된 지형으로, 유량이 많고 하곡이 넓은 지역에서 잘 발달한다. 범람원 중 자연제방은 지면이 높아 홍수의 피해가 적고, 배수가 잘 되기 때문에 취락의 입지나 농경에 유리하고, 배후습지는 지하수위가 높아 배수가 불량한 지형으로 오늘날에는 농경지로 개간하여 활용하고 있다. (중략)

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Geophysical surveys for delineation of leachate flows from AMD and buried rock wastes in Kwangyang abandoned mine (광양 폐광산의 산성광산배수의 유동경로 및 폐광석 탐지를 위한 지구물리탐사)

  • 김지수;한수형;윤왕중;김대화;이경주;최상훈;이평구
    • Economic and Environmental Geology
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    • v.36 no.2
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    • pp.123-131
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    • 2003
  • Geophysical surveys(electrical resistivity, self-potential, seismic refraction, GPR) were conducted to investigate the physical properties of the subsurface, and to delineate the flow channel of leachate from a AMD(acid mine drainage), buried rock wastes and tailings, and drainage pipes at an abandoned mine(Kwangyang mine). Especially in rainy season the sites appear to be abundant in AMD leachate, characterized by electrical conductivities of 0.98-1.10 ms/S. Electrical resistivity sections indicate that the leachate flows running in two directions at southern part rise up through the narrow fracture zones at the central part and contaminates the surrounding soil and stream. Such schematic features at the anomalous zone are well correlated with negative peaks in self-potential data, the limited penetration depth in GPR data and low velocity zone in seismic refraction data. Shallow high-resistivity zone is associated with the buried rock wastes which cause the diffractions in GPR image. In addition, the events at depth of approximately 1-1.25 m in GPR sections must be the metal pipes through which AMD is drained off to the inner bay.

A numerical comparison study on the estimation of relaxed rock mass height around subsea tunnels with the existing suggested methods (해저터널의 이완하중고 산정을 위한 제안식들과의 수치해석적 비교 연구)

  • You, Kwang-Ho;Lee, Dong-Hoon
    • Journal of Korean Tunnelling and Underground Space Association
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    • v.10 no.1
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    • pp.25-36
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    • 2008
  • When constructing subsea underground structures, the influence of high water and seepage pressure acting on the structures can not be neglected. Thus hydro-mechanical coupled analysis should be performed to estimate the behavior of the structures precisely In practice, relaxed rock load is generally used for the design of tunnel concrete lining. A method based on the distribution of local safety factor around a tunnel was proposed for the estimation of a height of relaxed rock mass ($H_{relaxed}$). In this study, the validation of the suggested method is investigated in the framework of hydro-mechanical coupled analyses. It was suggested that inducing inflow by pumping through a drainage well gave more reliable results than inducing inflow with shotcrete hydraulic characteristics in case of rock condition of Class III. In this study, therefore, inducing inflow by pumping through a drainage well are adopted in estimating $H_{relaxed}$ due to a tunnel excavation with the rock condition of Class I, III, and V. Also the estimated $H_{relaxed}$ results are compared with those of the existing suggested methods. As the result of this study, it is confirmed that estimating $H_{relaxed}$ based on the distribution of local safety factor around a tunnel can be effectively used even for the case of hydro-mechanical coupled analysis. It is also found that inducing inflow pumping through a drainage well gives more precise and consistent Hrelaxed of a subsea structure.

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Computation of Underground Storm Water Storage Facilities Volume for Reducing the Flood Damage in Urban Area (도시침수저감을 위한 지하저류조 용량 산정)

  • Han, Kun-Yeun;Son, In-Ho;Lee, Sang-Yeob;Im, Jae-Tae
    • Proceedings of the Korea Water Resources Association Conference
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    • 2009.05a
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    • pp.1007-1011
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    • 2009
  • 도시지역에 있어서 홍수피해의 직접적인 원인으로는 외수의 범람에 의한 침수와 내수 배제 불량에 의한 침수피해로 구분할 수 있는데 최근 도시지역에 발생하는 홍수피해의 대부분은 외수의 직접 범람에 의한 피해보다는 각종 수리구조물의 배제능력 부족이나 방류지점에서의 배수위의 영향으로 인한 내수의 배제 불량에 기인한 피해가 증가하는 추세이다. 또한 최근 도시지역에 홍수피해를 유발하고 있는 강우의 특징은 단시간에 많은 강우가 집중하여 발생하는 국지성 집중호우로 단시간 내에 수공구조물의 기능을 마비시킴으로써 침수피해를 가중시키는 경향이 있으므로 배수시설 설계 시 이러한 강우의 특성과 도시유출 특성에 대한 고려가 요구되며 중요 시설물에 대해서는 설계빈도의 상향조정이 필요하다. 본 연구에서는 기존 도시유역에 적용되고 있는 강우-유출모형의 기본이론의 장 단점을 검토하여 본 연구의 목적과 용도에 가장 적합하다고 판단되는 SWMM 모형을 선정하여 적용하였다. 대구 서구 비산 7동 배수구역의 유출모의를 실시한바, 향후 경제적 편익을 고려하고, 정확한 실측 유량자료 값을 산정, 관거 내 유속을 방해하는 토사 등 보다 정확한 관거자료, 모의에 사용하는 각종 매개 변수값의 정확도를 높인다면 인위적인 배수계통을 가지는 도시유역에서의 각종 풍수해에 피해를 최소화 할 수 있는 보다 합리적인 방재대책 수립에 큰 도움을 줄 것으로 판단된다.

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Analysis about Fill Deposit Poor Drainage through Permeability Test and Groundwater Monitoring (투수시험과 지하수 모니터링을 통한 매립층의 배수불량 원인 분석)

  • Jung, Hee-Suk;Lee, Kang-Il;Kim, Joon-Seok
    • Journal of the Society of Disaster Information
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    • v.14 no.2
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    • pp.165-173
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    • 2018
  • Purpose: The area such as historic sites where distributed in the hills surrounded by the mountains in the past, if heavy rains occur, soil that distributed in the substructure of a sedimentary layer's permeability decreases therefore, water do not smoothly drainage and increases surface structures' moisture content. Therefore, many phenomena occur such as the muddy ground. This experiment tried to figure out the cause of poor drainage, predicting poor drainage system when rainfall occur. So not only the base of cultural properties distributed in the historic site, but also have big influences on the upper structure. Method: We are going to propose an improvement plan through the various sites exploration and the field permeability test. In addition, analyze interrelationship to figure out the cause of the poor drainage through monitoring under ground water. Conclusion: As the result of the experiment, the cause of the poor drainage system formed on shallow depth of ground level inside of a land. We can see that soil of surface and fill deposit permeability was in poor condition. Therefore, it was in very inappropriate hydrogeological condition when surface water permeate into the underground when rainfall occurs.

A numerical comparative study on induced drainage modelling in 2D hydro-mechanical coupled analysis (이차원 수리-역학적 연계해석 시 유도배수 모델링 방법에 따른 수치해석적 비교연구)

  • You, Kwang-Ho
    • Journal of Korean Tunnelling and Underground Space Association
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    • v.10 no.1
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    • pp.91-104
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    • 2008
  • In tunnels, safety factor concept has been suggested to estimate their stability quantitatively. It is merely limited in the framework of mechanical analysis. However safety factor concept has not been applied in hydro-mechanical coupled analyses due to their modelling complexity. Recently studies on this topic are being actively made. In this study, induced drainage modelling methods for hydro-mechanical coupled analyses are compared and analyzed to estimate safety factor of a subsea tunnel exactly. To this end, methods both controlling hydraulic characteristic of shotcrete and using a drainage well are considered. Sensitivity analysis were carried out on rock class, thickness of shotcrete, and hydraulic properties of rock mass. As the results of this study, it turned out that the induced drainage modelling using a drainage well would give more reliable results than that of controlling hydraulic characteristic of shotcrete in estimating tunnel stability in hydro-mechanical coupled analyses.

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Evaluation of Drain Pump System by Inundation Analysis in Urban Underground Passage (도시 지하차도 침수 분석을 통한 강제배제시설 평가)

  • Lee, Jung-Ho
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.8 no.5
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    • pp.1192-1200
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    • 2007
  • A general rainfall outflow in urban drainage has early time of concentration because urban drainage areas are most paved area. In general, rainfall outflow is flowed in drainage pump station and is discharged to rivers in urban areas. However it is excluded through drainage pumps about a heavy rainfall which exceed the design rainfall and the rainfall outflows increase the urban inundation risk. A current pump operation is control according to water level of collecting well or reservoir in drain pump station. But recently, the localized downpours are happened frequently in urban drainage and the current pump stations are frequently incapable of the heavy rainfall outflows. In this study, a real urban inundation was simulated and the drain capacity of drain pump station was evaluated by analysis about flood-factor in urban underground passage. Then the analysis about the inundation was done by the simulation about the real rainfall which cause the inundation. Also, in the simulation the inundation risk and the evaluation of flood-factor were analyzed according to change of the pump operation rule.

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Evaluation of Drainage System and Coupled Analysis of Heat Transfer and Water Flow for Ice Ring formation in Daejeon LNG Pilot Cavern (대전 LNG Pilot Cavern에서의 배수시스템 평가 및 Ice Ring 형성에 관한 냉열수리 연동해석)

  • Jeong Woo-Cheol;Lee Hee-Suk;Lee Dae-Hyuck;Kim Ho-Yeong;Choi Young-Tae
    • Tunnel and Underground Space
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    • v.16 no.1 s.60
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    • pp.38-49
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    • 2006
  • LNG storage in lined rock cavern demands various techniques concerned with rock mechanics, thermo-mechanics and hydrogeology in design, construction and maintenance stage. LNG pilot cavern was constructed in Daejeon in order to verify these techniques. In this paper, evaluation of drainage system and ice ring formation was studied by numerical simulation. By Modflow analysis in the viewpoint of aquifer and Seep/W analysis in the viewpoint of flow system, it was verified that the drainage system in the pilot cavern was efficiently operated. Since ice ring formation can be simulated by interactive relation between heat transfer and water flow, coupled analysis of those was performed. In this analysis, the position of ice ring was presumed and it was demonstrated that the formation is affected by velocity and direction of groundwater flow.