• Title/Summary/Keyword: 배수공

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A Study on Seepage Control of Levee with Pervious Toe Drain (본배수공을 이용한 하천제방의 침윤조절에 관한 연구)

  • Lee, Sang-Ho;Kong, Young-San;Lee, Nam-Joo;Yu, Kwon-Kyu
    • Proceedings of the Korea Water Resources Association Conference
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    • 2011.05a
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    • pp.162-166
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    • 2011
  • 하천제방은 가장 치수효과가 높은 홍수방어시설로서 홍수 시 유수를 원활하게 소통시키고 제내지를 보호하기 위해 하천을 따라 축조한 시설이다. 누수에 의한 제방파괴는 제내지 제체에 드러난 포화표면이 결정적인 요인이 되므로 침윤선을 낮추어 제체하부에 위치하도록 해야 하며 누수가 발생한 제방에 대해서는 적절한 보강기법을 적용해야 한다. 본 연구에서는 하천제방 축조 또는 보강 시 누수에 의한 파괴를 방지하기 위한 방법으로 미국 공병단과 일본 국토기술연구센터에서 사용하는 기법 중 하나인 배수공을 두어 침윤선을 조절하는 방법을 적용하였다. 구체적으로 공병단과 일본 국토기술연구센터에서 제시하는 배수공을 가지는 경우의 제방 실험 및 수치 모형 보정 결과를 비교하였다. 침투 수치 모의는 SEEP/W 프로그램으로 검토하였다. 실험에 적용한 제방의 규격은 제방폭 2.6 m, 둑마루폭 0.4 m, 사면경사 1:2, 제방 높이 0.55 m, 수위 0.5 m이다. 배수공이 없는 제방은 사면에서 누수가 발생하였으며, 배수공 바닥폭이 0.4 m인 공병단과 일본 국토기술연구센터에서 제시하는 배수공을 설치하였을 때는 누수가 발생하지 않았다. 같은 배수공 바닥폭을 가지는 공병단과 일본 국토기술연구센터식 배수공을 설치한 제방의 실험을 비교한 결과, 일본국토기술연구센터식 배수공을 설치한 제방의 침윤선이 공병단식 배수공을 설치한 제방보다 낮았다. 즉, 일본 국토기술연구센터식 사각형 배수공이 다소 안정한 것으로 분석되었다.

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An Evaluation of Treatment Technologies for Anti-scale in Drainage Works Using Simulation Test of Road Tunnel (도로터널의 모사시험을 통한 배수공 스케일 억제 기술 평가)

  • Park, Eun-Hyung;Nam, Joong-Woo;Han, Yoon-Su;Kim, Hyun-Gi;Chun, Byung-Sik
    • Journal of the Korean Geotechnical Society
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    • v.29 no.7
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    • pp.5-15
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    • 2013
  • Clogging phenomenon is one of the important problems in deteriorated tunnels, and it caused inhibition of drainage system by long-term behavior. Clogging phenomenon is mainly composed of $CaCO_3$ in the form calcite. Calcite is generally created by the reaction of $Ca(OH)_2$ with $CO_2$ emitted from vehicles. The structure of deteriorated tunnels was simulated and the setting of outflow from drainage pipe was observed in this study. The test was experienced by changing the slope of drainage system because existing drainage system was pracitced almost below $5^{\circ}$. As a result, in case of drainage system's slope is $2^{\circ}$, Quantum Stick has an effect for prohibiting scale in drainage system, but magnetic treatment was not effective. As a result, in case of drainage system's slope is $5^{\circ}$, both technologies were effective for prohibiting scale in drainage system, but Quantum Stick was especially more effective than magnetic treatment.

Performance of Horizontal Drainage in the Slope Using Numerical Analysis (수치해석을 이용한 비탈면 수평배수공의 성능 분석)

  • Sangyun Kim;Hoki Ban
    • Journal of the Korean GEO-environmental Society
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    • v.25 no.8
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    • pp.5-11
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    • 2024
  • Due to the high proportion of mountainous terrain in Korean territory and the concentration of heavy rainfall during the summer season, concerns arise about the potential decrease in slope stability caused by rainfall. Installing slope drainage facilities mitigates the rise in groundwater levels due to infiltration, thus enhancing slope stability. Horizontal drains, classified as auxiliary facilities among drainage systems, lack established installation standards and related research. Slopes with installed horizontal drains have been confirmed to exhibit higher safety factors compared to those without. Furthermore, the safety factor of mimicking horizontal drains by increasing the permeability coefficient of the surrounding ground was compared with that of the conventional simulation method using the Drain function. As a result of the comparison, it was confirmed that the installation length showed better drainage performance than the installation angle in the drainage performance of the horizontal drainage hole, and it was judged that the installation length was a more important factor.

The Control Method of Scale in Drainage Pipe of Deteriorated Tunnel used Magnetic Field and Quantum Stick (자화장치와 퀀텀스틱을 이용한 노후터널의 배수공내 침전물 방지 방법)

  • Nam, Joongwoo;Lee, Changgi;Lee, Jonghwi;Do, Jongnam;Chun, Byungsik
    • Journal of the Korean GEO-environmental Society
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    • v.12 no.11
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    • pp.59-64
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    • 2011
  • Clogging in drainage pipe is one of the important problems, so it needs a remedy urgently. Recently, scale in drainage pipe is removed by water jet cleaning and other treatment. But these treatments need much cost and regular management. The principal component of scale in drainage pipe is $CaCO_{3}$. It was observed the setting of $CaCO_{3}$ by some kind of analysis such as SEM, XRD, visual and weight measuring analysis to solve these problems and prevent setting formation in drainage pipe. As a result, in case of magnetic, particle shape of $CaCO_{3}$ is changed Aragonite from Calcite. Also in case of Quantum Stick, the amount of scale is reduced by expert inspector's result. As a whole, Magnetic treatment and Quantum Stick have the effect for protecting of scale precipitation.

A Study on the Characteristics of Pressure Drainage for Geotextiles by Laboratory Model Tests (모형실험에 의한 지오텍스타일의 압력배수 특성 연구)

  • 이상호;권무남
    • Geotechnical Engineering
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    • v.12 no.5
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    • pp.89-102
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    • 1996
  • In order to investigate the characteristics of pressure drainage for geotextile, small-scale model tests were carried out for the horizontal and vertical geotextile drain to accelerate consolidation of foundation under embankment for the purpose of foundation reinforcement. According to the result of this study, the accumulative drainage discharge is found to increase as compressive stress of geotextile increases with logarithmic function. The drainage discharge under each step of compressive stress linearly increases with the increase of hydraulic head and its increasing rate is smaller when the compressive stress is higher. The drainage discharge shows to be greater when the number of geoteztile layers is more and the foundation material is finer. The relationship between transmissivity of geogextile and drainage discharge has positive correlation and the rate of increase is appeared to be the same regardless of foundation material and hydraulic head. And it proves that the drainage capacity of geotextile drain is determined by the transmissivity of geoteztile.

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Application of CAT Model for Paddy Field Using Surface Drainage Pipe (배수공을 이용하는 논에서의 물수지 분석을 위한 CAT 모형 적용)

  • Lee, Kyoung-Sook;Choi, Dong-Ho;Jeong, Ju-Hong;Jung, Jae-Woon;Yoon, Kwang-Sik
    • Proceedings of the Korea Water Resources Association Conference
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    • 2011.05a
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    • pp.69-69
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    • 2011
  • 영산강 수계인 함평지역의 면적이 13.69ha인 논 유역에 건설기술연구원에서 개발된 수문모형인 CAT 모형을 적용하였다. 이 유역에서는 배수를 위해 플라스틱 파이프로 된 배수공을 쓰고 있으며, 배수공은 기존의 Weir Type의 물꼬와는 상이하게 Orifice 형식의 수리적 특성을 갖는다. 이러한 조건에 맞는 수문분석을 위해서 CAT 모형에 배수공을 위한 모듈이 추가되었으며, 현장 계측 자료를 이용한 적용성 평가가 요구되고 있다. 본 연구에서는 2008년부터 2010년까지 대상지역 논에서 모니터링 한 강우-유출 자료를 이용하여 논에서의 물수지 분석을 위한 CAT 모형의 적용성을 평가하였다.

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A Study of stability gaining on tidal gate structure by scouring at soft foundation (연약지반에서 세굴에 의한 배수갑문 안정성 확보를 위한 연구)

  • Choi, Byung-Kyu;Kim, Kyoung-Wook;Jung, Yo-Han
    • Proceedings of the Korea Water Resources Association Conference
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    • 2009.05a
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    • pp.832-836
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    • 2009
  • 공유수면을 간척 또는 매립하여 국토를 확장하여 산업화 도시화에 따른 토지수요 용도변경에 대처하여 국가발전의 균형을 유지하는 목적으로 수행하는 간척사업 시설중 중요한 시설인 배수갑문은 외수(해수)의 차단 및 내수배제를 통한 침수피해 경감의 역할을 수행하고 있다. '02년 태풍 "루사" 등 수공구조물의 설계빈도를 초과하는 폭우 발생으로 인한 홍수피해가 발생하고 배수갑문 설계시보다 유입홍수량이 증가하여 홍수시 수위가 계획홍수위 이상으로 형성되는 경우가 많아 이를 해결하기 위하여 배수갑문의 확장사업이 실시되고 있다. 그 첫 번째 사업으로 아산만방조제 배수갑문의 확장을 실시하였다. 아산만방조재 신설 배수갑문의 위치가 연약지반으로 형성되어 있어 신설 배수갑문을 통한 방류시 고속의 수류로 인한 바다측 물받이공 하류부의 세굴이 발생할 가능성이 크며, 이로 인한 배수갑문의 붕괴 우려가 있다. 그러므로 이를 방지하기 위하여 배수갑문 하류에 정수지형 물받이공을 설치하여 고속으로 방류되는 방류수의 유속을 저감시켜 세굴의 발생이 최소화하여 안정성이 확보되도록 하였다. 정수지형 물받이공의 효과 및 안정성을 검증하기 위하여 3차원 수치해석 FLOW-3D모형을 적용하여 수평물받이공과 정수지형 물받이공의 유속차이를 비교분석하였다. 분석한 결과 정수지 말단부에서 정수지 시점부와 비교하여 유속감소는 최대 약 49%, 평균 약 39%의 유속 감세효과를 나타내는 것으로 나타나 정수지형 물받이공을 통한 세굴 감소효과로 아산만방조제 배수갑문의 세굴에 의한 안정성은 확보되는 것으로 나타났다.

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A Study on the Evaluation Criteria of Drainage Performance by Measurement of Horizontal Drainage Flow Rate by Damage Degree by Interior Model Construction Experiment (실내 모형토조실험에 의한 손상도별 수평배수공 유출량 측정을 통한 배수성능 평가 기준 제안)

  • Suhwan Choi;Donghyuk Lee;Jeonghoon Shim
    • Journal of the Korean GEO-environmental Society
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    • v.24 no.1
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    • pp.45-50
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    • 2023
  • In order to prevent slope disasters caused by rainfall, it is very important to quickly exclude rainfall. In Korea, horizontal drainage holes with excellent economic feasibility and construction performance are generally applied as a method to lower the underground water level. However, horizontal drainage holes constructed on the site are often uniformly constructed regardless of the presence or absence of other water or ground conditions, and it is often difficult to expect drainage performance of horizontal drainage holes due to poor maintenance. In this study, an artificial ground was created using model construction and horizontal drainage experiments were conducted to measure the amount of horizontal drainage drain in a certain amount of control area 0%, 25%, 50%, 75%, and an evaluation table (draft) that can quantitatively evaluate horizontal drainage based on measurements and design documents is proposed as basic data.

A Study for Seepage Control of Levee with a Pervious Toe Drain (제내 비탈끝 배수공을 이용한 제방의 침투조절에 관한 연구)

  • Kong, Young-San;Kang, Tae-Uk;Lee, Sang-Ho
    • Journal of Korea Water Resources Association
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    • v.45 no.6
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    • pp.569-581
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    • 2012
  • The levee is the facility which is constructed along with river for the protection of landside and for passage of water when there is a flood. When the seepage is exposed to the atmosphere on the landside surface of levee, it may eventually lead to levee failure. The seepage water may be removed from the landside surface by a properly designed drainage system. The purpose of the study is to show seepage control effect of a pervious toe drain, and to compare two drainage methods of a pervious toe drain. One is the pervious toe drain suggested by U.S. Army Corps of Engineers (USACE) and the other is that suggested by Japan Institute of Construction Engineering (JICE). The levee model constructed has the following dimension: the base width is 2.6 m; the crest width is 0.4 m; the side slope 1 : 2. The water depth in the riverside is 0.5 m. The shape of the toe drain by USACE is triangular. The shape of the toe drain by JICE is rectangular. They were installed with the base length of 0.4 m. The levee model without the toe drain showed saturation surface on the land side in the experiment but not with the toe drain. The experiment results was applied to a numerical analysis model using SEEP/W to calibrate and verify. The numerical analysis results for 35 cm and 30 cm drain width showed that the drain by JICE is a little bit safer than the drain by USACE. It is also easier to construct the toe drain by JICE. The results in the study would be applied to plan the seepage control for a levee with pervious toe drain.

Field Applicability of Scale Prevention Technologies for Drainage Holes (배수공 내 스케일 생성 방지 기술의 현장 적용성 평가)

  • Chu, Ickchan;Lee, Jonghwi;Kim, Hyungi;Kim, Kyungmin;Chun, Byungsik
    • Journal of the Korean GEO-environmental Society
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    • v.13 no.9
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    • pp.45-51
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    • 2012
  • The calcium hydroxide$(Ca(OH)_2)$ which is the cement hydrate flowed into the tunnel by groundwater is reacted with microorganism in the soil, carbon dioxide$(CO_2)$ and the vehicle's exhaust gas$(SO_3)$. So its by-products are precipitated at the drainage pipe and these cause the drainage clogging. By this phenomenon, Degradation of water flow at the drainage system of the tunnel occurred and also pore water pressure is increased. Hence the acceleration of seepage and degradation of lining is occurred. The purpose of this study is to evaluate the field applicability of the Quantum Stick and Magnetic treatment in prevention of scale deposits at the Namsan ${\bigcirc}{\bigcirc}$ tunnel and the Zone ${\bigcirc}{\bigcirc}{\bigcirc}$ of subway. These technologies were installed into drainpipes with their performance monitored through occasional site visits. SEM and XRD were also performed on scale collected from these drainpipes. As a result, in case which factor technology is applied, scale creation is remarkably decreased and especially Quantum Stick treatment performing better than Magnetic treatment. Therefore, additional application of Quantum Stick or Magnetic treatment to the existing drainage is expected to decrease the drainage clogging of the drainage.