• 제목/요약/키워드: slope failure and erosion

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강우로 인한 철도 연변사면의 활동분석 : 실내모형실험 (Analysis on the Rainfall Driven Slope Failure Adjacent to a Railway : Flume Tests)

  • 사공명;김민석;김수삼;이인용
    • 한국지반공학회논문집
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    • 제22권5호
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    • pp.83-91
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    • 2006
  • 최근 지구온난화현상으로 인해 발생하는 국지성 호우는 철도 연변사면 활동 및 활동 토체로 인한 선로매몰 그리고 선로유실 등의 불안정성을 초래하는 요인으로 대두되고 있다. 강우로 인한 사면의 거동에 대한 현장조사 결과 토층의 두께 및 사면의 형태적 특성 등에 따라 서로 다른 활동특성이 관측되었다. 이와 같은 활동특성을 천층 활동타입, 중간층 활동타입, 우곡부 활동타입, 암반 경계부 활동타입 4가지로 분류하였다. 이러한 관측과 관련하여 각 타입의 활동메커니즘을 규명하고 강우시 사면의 거동특성을 분석하고자 실내모형실험을 수행하였다. 실내모형실험은 미립분함량, 초기함수비, 경사각, 다짐에너지를 고정 변수로 취하고 토피고, 강우강도, 사면표면의 형태를 변화시키는 조건으로 수행되었다. 실내모형실험의 결과 천층 활동은 주로 표층에서 발생하며 침식에 의한 활동임을 알 수 있었다. 또한 초기 침식이 상대적으로 다른 활동타입에 비해서 늦게 발생하였으나 침식의 진행은 빨랐다. 우곡부 활동타입은 우곡부로 집수된 빗물로 인하여 침식 정도가 더 심하게 진행되었으며 사면내 위치하는 전석이 드러날 정도였다. 전석층까지 침식이 발생한후 전석의 존재로 인하여 추가적인 침식이 상대적으로 그 이전보다 느리게 발생하였다. 암반 경계부 활동타입의 경우 본 실험에서 가장 빨리 초기 활동 발생이 관측되었다. 각 활동타입에서 공통적으로 관측된 사항은 사면의 하단부에서 초기 변형이 관측되었으며 이러한 관측은 사면내 침투수의 사면방향의 흐름을 의미한다.

Image-based characterization of internal erosion around pipe in earth dam

  • Dong-Ju Kim;Samuel OIamide Aregbesola;Jong-Sub Lee;Hunhee Cho;Yong-Hoon Byun
    • Computers and Concrete
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    • 제33권5호
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    • pp.481-496
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    • 2024
  • Internal erosion around pipes can lead to the failure of earth dams through various mechanisms. This study investigates the displacement patterns in earth dam models under three different failure modes due to internal erosion, using digital image correlation (DIC) methods. Three failure modes—erosion along a pipe (FM1), pipe leakage leading to soil erosion (FM2), and erosion in a pipe due to defects (FM3)—are analyzed using two- and three-dimensional image- processing techniques. The internal displacement of the cross-sectional area and the surface displacement of the downstream slope in the dam models are monitored using an image acquisition system. Physical model tests reveal that FM1 exhibits significant displacement on the upper surface of the downstream slope, FM2 shows focused displacement around the pipe defect, and FM3 demonstrates increased displacement on the upstream slope. The variations in internal and surface displacements with time depend on the segmented area and failure mode. Analyzing the relationships between internal and surface displacements using Pearson correlation coefficients reveals various displacement patterns for the segmented areas and failure modes. Therefore, the image-based characterization methods presented in this study may be useful for analyzing the displacement distribution and behavior of earth dams around pipes, and further, for understanding and predicting their failure mechanisms.

식생기반재 돌망태를 이용한 임도비탈면 복원기술 개발 (Development of the Forest Road Cut-slope Rehabilitation Techniques Using Gabion Systems with Vegetation Base Materials)

  • 박재현;정용호;최형태
    • 한국환경복원기술학회지
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    • 제11권5호
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    • pp.92-103
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    • 2008
  • Development of new approaches to achieve naturally good ecological potential of forest road cut-slope by making the best use of advantages of gabion systems with vegetation base materials to prevent slope failure and erosion, in the area with highly erodible soil. As a result on the type analysis of gabion systems already installed in road cut-slopes, gabion systems were generally established to prevent slope failure. Existing gabion systems can be divided into monolithic and modular system and can be divided into ten subtypes according to the purpose of establishment and combination of other measures. As a result on the monitoring of erosion amount from forest road cut-slopes in the test applications, the order of erosion amount from largest to smallest is as follows : the curved road cut-slope site where normal gabion system was established ($7,911cm^3$); the control site ($7,632cm^3$); the straight road cut-slope site where normal gabion system was established ($7,301cm^3$); the curved road cut-slope site where the new gabion system was established ($5,684cm^3$); and the straight road cut-slope site where the new gabion system ($5,325cm^3$). Therefore, the result shows that the new gabion system is more effective than the normal gabion system to reduce erosion amount from forest ! road cut-slopes. During the study period, vegetation coverages of the straight and curved road cut-slope site where the new gabion system was established were about 45% and about 36%, so average vegetation coverage of the sites where the new gabion systems was established was higher than the sites where the normal gabion systems was established. Therefore, it was concluded that the new gabion system can be more effective for cut-slope revegetation.

강우에 의한 사면붕괴에 관한 2차원 수치모의 (Two-dimensional Numerical Simulation of Rainfall-induced Slope Failure)

  • 램 크리쉬나 레그미;정관수;이기하
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2012년도 학술발표회
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    • pp.34-34
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    • 2012
  • Heavy storms rainfall has caused many landslides and slope failures especially in the mountainous area of the world. Landslides and slope failures are common geologic hazards and posed serious threats and globally cause billions in monetary losses and thousands of casualies each year so that studies on slope stability and its failure mechanism under rainfall are being increasing attention of these days. Rainfall-induced slope failures are generally caused by the rise in ground water level, and increase in pore water pressures and seepage forces during periods of intense rainfall. The effective stress in the soil will be decreased due to the increased pore pressure, which thus reduces the soil shear strength, eventually resulting in slope failure. During the rainfall, a wetting front goes downward into the slope, resulting in a gradual increase of the water content and a decrease of the negative pore-water pressure. This negative pore-water pressure is referred to as matric suction when referenced to the pore air pressure that contributes to the stability of unsaturated soil slopes. Therefore, the importance is the study of saturated unsaturated soil behaviors in evaluation of slope stability under heavy rainfall condition. In an actual field, a series of failures may occur in a slope due to a rainfall event. So, this study attempts to develop a numerical model to investigate this failure mechanism. A two-dimensional seepage flow model coupled with a one-dimensional surface flow and erosion/deposition model is used for seepage analysis. It is necessary to identify either there is surface runoff produced or not in a soil slope during a rainfall event, while analyzing the seepage and stability of such slopes. Runoff produced by rainfall may result erosion/deposition process on the surface of the slope. The depth of runoff has vital role in the seepage process within the soil domain so that surface flow and erosion/deposition model computes the surface water head of the runoff produced by the rainfall, and erosion/deposition on the surface of the model slope. Pore water pressure and moisture content data obtained by the seepage flow model are then used to analyze the stability of the slope. Spencer method of slope stability analysis is incorporated into dynamic programming to locate the critical slip surface of a general slope.

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친환경 호안구조물의 사면보호 효과에 관한 연구 (Study on Slope Prevention Effect of Eco-environmental Riprap Structure)

  • 김기웅
    • 한국지반신소재학회논문집
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    • 제8권4호
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    • pp.47-51
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    • 2009
  • 우리나라의 자연재해는 대부분 풍수해에 의해 발생하며, 강우시 산비탈이 갑작스럽게 붕괴되는 산사태로 인해 큰 재난을 겪고 있다. 사면파괴를 유발하는 요인은 다양하고 요인들이 서로 관련이 있기 때문에 어느 하나의 요인에 의하여 사면파괴의 발생을 설명할 수는 없으나, 외적요인 중 강우는 가장 중요한 외적요인이다. 따라서, 본 논문에서는 무보강된 일반사면과 친환경 호안구조물로 사면보호공법이 적용된 사면을 대상으로 실내 강우재현실험을 수행하였으며, 강우강도와 사면경사에 따른 유출량과 저류량을 분석하여 호안구조물의 침식에 대한 사면보호효과에 대하여 검토하였다.

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정상류 침투를 가정한 강우시 사면안정해석기법 (A methodological approach for slope stability analysis in Steady state infiltration)

  • 송평현;유병옥;안광국
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2009년도 세계 도시지반공학 심포지엄
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    • pp.736-744
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    • 2009
  • The abrupt failure of slope caused by a concentrated rainfall would be a disaster in this country. Specially, the soil slope may be collapsed by the rainfall seepage, however, there is not much information for the mechanism of slope failure during rainfall. As analyzing the stability of slope by rainfall, the conventional method is to put the ground-water level on the surface of slope. However, it may provide the over-reinforcement for the slope stability. Futhermore, although over-reinforcement for the slope was fulfilled, the possibility of potential slope failure still exists. In this study, the slope stability by the conventional design method and the causes of unstable slope during rainfall were investigated. To analyze the slope stability by rainfall, the computer program SEEP/W for the analysis of seepage was used. As changing the intensity and duration of rainfall in SEEP/W, the analysis were performed. After completion of analysis, the porewater pressure data from SEEP/W was applied to SLOPE/W. As a results of this analysis, it is not reasonable that the groundwater level is going up to the surface of slope during rainfall. Therefore, the conventional reinforcement for the slope stability is not obvious to satisfy the criterion safety factor during rainfall. The reasonable counterplan is to install drainage hole on the surface of slope in order to prevent erosion and debris flow.

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임도비탈면에 시공한 식생기반재돌망태의 침식방지 및 녹화효과 분석 (Analysis of the Forest Road Cut-slope Erosion Control and Rehabilitation Techniques using Gabion Systems with Vegetation Base Materials)

  • 박재현
    • 한국산림과학회지
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    • 제102권1호
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    • pp.30-37
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    • 2013
  • 이 연구는 식생기반재 돌망태의 침식억지효과 및 녹화효과를 분석하는데 있다. 이 연구를 통하여 얻은 결론은 다음과 같다. 조사기간 중 평균침식량을 분석해 본 결과, 침식량이 가장 많은 순으로 보면 곡선부에서의 일반돌망태시공지(5,840 $cm^3$)>대조구(5,833 $cm^3$)>직선부의 일반돌망태 시공지(5,621 $cm^3$)>곡선부의 식생기반재돌망태시공지(4,298 $cm^3$)> 직선부의 식생기반재돌망태시공지(4,117 $cm^3$)의 순으로 나타나 식생기반재 돌망태를 시공한 것이 임도절토비탈면의 침식을 저감하는데 효과적인 것으로 분석되었다. 아울러 임도 곡선부의 식생기반재돌망태 및 일반돌망태시공지의 토양침식억지효과가 직선부보다 낮게 나타나 이러한 구조물은 곡선부보다는 직선부에 설치하는 것이 효과적일 것으로 사료된다. 조사기간 중 평균식생피복률은 곡선부에서 45(28~65)%로 나타나 동일한 기간 직선부 식생기반재돌망태시공지의 평균피복률 56(30~85)% 보다 약 11(2~20)% 낮은 값을 나타내어 직선부에서의 식생피복률이 높게 나타났다. 또한 임도절토비탈면에 시공한 식생기반재돌망태는 안정화된 이후 임도 절토 비탈면의 토양침식을 억지하는 효과로 인해 식생피복률이 증가하는데 기여하는 것으로 분석되었다.

남양주-춘천(국도 46 호선)간 도로절개면 붕괴 특성 고찰 (Characteristics of Roadside Cut-Slopes Failures along the 46th National Highway)

  • 구호본;정의진;박성욱
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2000년도 가을 학술발표회 논문집
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    • pp.527-534
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    • 2000
  • 136 cut slopes which extends from Namyangju to Chunchon city along the 46th national highway were investigated to analyze the influence factors affecting slope instability. Geologic and geotechnical conditions were examined and the detailed investigation were carried out for fifty five failed slopes. failure mode (wedge failure, planar failure, circular failure, sheet eroison and rock falls) are examined with respect to slope inclination, rock type, weathering grade and discontinuity patterns. It is suggested that the failure modes and their dimensions have relations to the morphology and geologic conditions of the slopes. Wedge failure has highest is the most frequent failure mode and falls, sheet erosions, planar failures and circular in descending order of failure percentage. Wedge failure is most dominant failure type over all lithology except quartzite formation. In slopes of well foliated and banded gneiss, failure ratio of wedge is up to 50% ca. Failure ratio(number of rock fall/number of total failure) of rock fall increases with increase fo slope inclinations and decrease of weathering grade. Dimension analyses of failed slopes shows wedge and circular failure has higher value of D/L and D/H than planar failure and sheet erosion.

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지질특성에 따른 암반사면 붕괴유형연구 (Failure Types in Rock Slopes According to Geological Characteristics)

  • 정형식;유병옥
    • 한국지반공학회지:지반
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    • 제12권6호
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    • pp.37-50
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    • 1996
  • 본 연구는 국내 고속도로의 암반사면의 현장조사를 실시하여 암반사면의 붕괴형상 및 특징을 암종 및 지질구조에 따라 분류하였으며 사면의 암종에 따른 붕괴규모, 붕괴시기 등을 분류하고 불안정한 사면에 영향을 주는 주요 지질구조에 대해 분석하였다. 연구결과, 붕괴 빈도가 높은 사면은 한반도의 남동측에 나타나는 중생대 백악기 퇴적암층과 경기일원 및 강원도 일원의 비교적 넓게 분포하고 있는 선캠브리아기의 편마암, 편암지대에 분포하는 것으로 나타났다. 암종에 따른 붕괴유형은 화성암이 낙석, 평면파괴, 토층유실, 원호파괴의 붕괴유형을 보이나 붕괴빈도가 비교적 낮고 퇴적암에서는 평면파괴가 우세하게 나타났으며 계일층의 차별적인 풍화에 의해 붕락형의 붕괴유형을 보이기도 하였다. 그리고 변성암에서는 암질불량으로 인한 원형파괴, 단층구조 및 엽리 등으로 인한 쐐기파괴, 평면파괴양상을 보였다. 지질구조에 따른 붕괴는 퇴적암에서는 주로 층리에 의해서는 붕괴가 발생되었으며 화성암에서는 절리, 그리고 변성암에서는 단층과 암질불량에 의한 붕괴가 우세한 것으로 나타났다.

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Prediction of Outflow Hydrograph caused by Landslide Dam Failure by Overtopping

  • Do, XuanKhanh;Kim, Minseok;Nguyen, H.P.T;Jung, Kwansue
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2016년도 학술발표회
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    • pp.196-196
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    • 2016
  • Landslide dam failure presents as a severe natural disaster due to its adverse impact to people and property. If the landslide dams failed, the discharge of a huge volume of both water and sediment could result in a catastrophic flood in the downstream area. In most of previous studies, breaching process used to be considered as a constructed dam, rather than as a landslide dam. Their erosion rate was assumed to relate to discharge by a sediment transport equation. However, during surface erosion of landslide dam, the sediment transportation regime is greatly dependent on the slope surface and the sediment concentration in the flow. This study aims to accurately simulate the outflow hydrograph caused by landslide dam by overtopping through a 2D surface flow erosion/deposition model. The lateral erosion velocity in this model was presented as a function of the shear stress on the side wall. The simulated results were then compared and it was coherent with the results obtained from the experiments.

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