• Title/Summary/Keyword: 사면절개

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Back Pressure Dissipation and Vegetation Restoration Effect of Land Slope by Using Mattress/Filter (Mattress/Filter를 이용한 절개지사면의 배수압소산과 식생복원효과)

  • Park, Jae Min;Bae, Sang Su;Lee, Seung Yun;Jee, Hong Kee;Lee, Soontak
    • Proceedings of the Korea Water Resources Association Conference
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    • 2004.05b
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    • pp.1395-1399
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    • 2004
  • 절개지사면에 구조물이 설치될 경우 배수압소산과 식생복원을 위해서는 기본적으로 다공성이 뛰어나고 식생의 서식이 가능한 구조물로 설계되어야 하며, 동시에 사면의 안정을 제공해주는 기능을 할 수 있어야 한다. 구조물이 설치될 지역에 Mattress/Filter를 사용할 경우 배수압의 소산과 식생의 활착이 가능한 구조물로 사면의 안정과 식생복원효과를 검토하였다. 본 연구에서는 절개지사면에 토목구조물이 설치될 경우 식생의 복원과 구조물의 안정성을 높이기 위한 기법으로 Mattress/Filter에 Slag를 채워서 다공성을 부여함으로써 사면의 배수압소산과 식생촉진 뿐만 아니라 사면의 안정성을 제공해줄 수 있는 구조이다. 특히, Mattress/Filter는 다공성이 뛰어나 자연배수가 가능한 구조물로서 그 구변 생태계에 필수적인 물의 상호교류 즉, 투수와 배수가 가능하고 배수압의 소산이 가능하여 식생복원과 사면안정에 우수한 것으로 나타났다. Mattress옹벽은 배면의 지하수 배제를 촉진시켜 사면의 안정화에 기여하게 되려, 식생의 복원에 뛰어난 효과가 있는 것으로 나타났다. 또한 Mattress에서 Fitter의 채움 재료로 산업계기물(Slag) 및 건설폐기물(폐콘크리트, 사석) 등을 재활용할 수 있으므로 Mattress는 채움재료의 비용이 저렴하고 유지관리가 용이하며, 생태계의 보존에도 Mattress/Filter의 사용은 매우 효과적임을 알 수 있었다.

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3D Stereoscopic Terrain Extraction of Road Cut Failure Slope Using Unmanned Helicopter Photography System (무인 헬리콥터 사진촬영시스템을 이용한 도로 절개지 붕괴사면 3차원 입체 지형 추출)

  • Jang, Ho-Sik
    • Journal of the Korean Society of Surveying, Geodesy, Photogrammetry and Cartography
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    • v.28 no.5
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    • pp.485-491
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    • 2010
  • Acquisition of information on failure slope, which may cause apprehension of second hand damage, requires acquisition of fast and accurate topographical data and efficient expression in indirect surveying method without accessing as needed. Therefore, in this study, the images on the intended area were photographed through hovering in the air by approaching collapsed road cut slope with the use of unmanned helicopter photography system. As a result of comparing the points observed by no prism total station and the 10 coordinate points analyzed through image analysis, the averages of absolute values were shown to be 0.056m in X axis direction, 0.082m in Y axis direction and 0.066m Z axis direction. In addition, the RMSE of the error for 10 points of test points were 0.015636m in X axis direction, 0.021319m in Y axis direction and 0.018734m in Z axis direction. Therefore, this method can determine the range of slope and longitudinal and cross sections of each slope in dangerous area that cannot be approached in relational image matching method for the terrains of such collapsed cut slope.

Location Technique of Cutting Area Used by GPS Augmentation System (GPS보정항법 시스템을 활용한 절개지 위치조사 기법)

  • Kang, Ho-Yun;Kang, In-Joon;Song, Suk-Jin
    • Journal of the Korean Society of Surveying, Geodesy, Photogrammetry and Cartography
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    • v.27 no.5
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    • pp.629-635
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    • 2009
  • Collapses of cutting area have frequently occurred due to heavy rainfall caused by the recent unusual weather patterns. Collapses of cutting area have the most crucial influence on the damaged property and casualties. Therefore, formulating and preparing an effective measures and control system is urgent. For this reason, in this study, we researched formation investigation method of location-based cutting area for an efficient management of cutting area. We conducted comparative and analytic research on the hand GPS method and DGPS method which is GPS augmentation system, using SBAS signals. The results of the research showed that there was difficult in discerning the accurate shape of cutting area when the existing method was used; however, the detecting the shape of four sides and accurate location was possible when DGPS was used. Consequently, it is possible to establish a preventive measures for cutting area, which considers the condition of the surrounding environment of cutting area because the polygon based management of incision cliff is attainable, apart from the existing control point based approach.

A Case Study on the Analysis of Cause and Characteristics of a Landslide at the Sedimentary Rock Area (퇴적암 지역에서의 산사태 원인 및 특성 분석에 대한 사례연구)

  • Song, Young-Suk;Hong, Won-Pyo
    • The Journal of Engineering Geology
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    • v.17 no.1 s.50
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    • pp.101-113
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    • 2007
  • A landslide was occurred due to soil cutting for construction to expand the Donghae express highway in Dong-hae-City, Korea. The total area of the landslide was about $9,550m^2$ with 100 m of width and 87m of height. The landslide was occurred due to the internal factor of the unstable geological structure including the clay layer and the external factor of continuous heavy rainfalls. As the result of field instrumentation during the landslide, the horizontal displacement of the slope ground increases with increasing the accumulated rainfall by continuous rainfall during the rainy season. Also, the depth of sliding failure was decided by the horizontal displacement distribution during landslide occurrence. It makes sure that the horizontal displacement starts from the depth of sliding failure and the depth of sliding failure matches well with the location of the clay layer. As the slope stability analysis using Bishop's Simplified Method at the landslide area, the safety factor of slope during the rainy season was 0.53. This safety factor of slope was enough to trigger the landslide at this area. The depth of sliding failure obtained by analytical method matches well with the depth of the clay layer.

Case Study on Application of Geophysical Survey in the Weathered Slope including Core Stones (핵석을 포함하는 풍화사면에서의 지구물리탐사 적용사례 연구)

  • Hong, Won-Pyo;Kim, Jae-Hong;Ro, Byung-Don;Jeong, Gyo-Cheol
    • The Journal of Engineering Geology
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    • v.19 no.1
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    • pp.89-98
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    • 2009
  • Existence of core stone at the inside of the Rock mass is reacting as unstable element. In particular, in case of the cut slope, even when it is not exposed, slope's discontinuity increases or strength level decreases depending on the difference in the weathering grade when it comes to the core stone, and reacts as an important element of the slope movement such as slope's rock fall or collapse. As for the slope that is subject to study, incision was completed after 20 years or so, and parts of the slope reinforcement was completed, but frequent rock fall occurs despite small amount of rainfall, and permanent stability measures are urgent. Refractional seismic survey and geological survey results were compared and analyzed, and reliability was improved by complementing the two survey methods, and stereo-graphic projection using DIPS program was conducted to analyze the characteristics of oore stone in the weathered soil slope.

The Deformation Behavior of Anchored Retention Walls in Cut Slope (절개사면에 설치된 앵커지지 흙막이벽의 변형거동)

  • Song Young-Suk;Lee Jae-Ho;Kim Tae-Hyung
    • The Journal of Engineering Geology
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    • v.15 no.2 s.42
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    • pp.155-168
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    • 2005
  • The behavior of earth retention wall installed in a cut slope is different from the behavior of retention wall applied in an urban excavation. In order to establish the design method of anchored retention wall in the cut slope, the behavior of anchored retention wall needs to be investigated and checked in detail. In this study, the behavior of anchored retention wall was investigated by the instrumentation installed in the cut slope, where was stabilized by a row of piles in an apartment construction site. The horizontal displacement of anchored retention wall was larger than the displacement of slope soil behind the wall at the early stage of excavation. As the excavation depth became deeper, the horizontal displacement of slope soil was larger than the displacement of anchored retention wall. It means that the horizontal displacement of anchored retention wall due to excavation is restrained by soldier pile stiffness and jacking force of anchor at the early stage of excavation. lacking force of anchor was mainly influenced on the horizontal displacement of anchored retention wall. The displacements of anchored retention wall and slope soil were affected mainly by rainfall infiltrated from the ground surface. Meanwhile, the horizontal displacement of anchored retention wall with a sloped backside was about $2\~6$ times larger than the displacement of anchored retention wall with a horizontal backside of excavation.