• Title/Summary/Keyword: 사면모형

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Effects of Slope Location on the Boundary Condition in the 1g Shaking Table Test (1g 진동대시험에서 사면의 위치에 따른 경계조건 영향평가)

  • Jeong, Sugeun;Jin, Yong;Kim, Daeheyon
    • The Journal of Engineering Geology
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    • v.32 no.4
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    • pp.535-545
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    • 2022
  • Improving the stability of the ground in seismic design requires an understanding of the dynamic behavior of the ground under seismic loads. The shaking table test is an important methodology to provide this understanding. This study aimed to assess the influence on boundary conditions, as they are among the most important factors affecting the test. This was achieved by testing the influence of boundary conditions on the seismic responses of model slopes at different locations in the testing apparatus. A model slope was fabricated at different locations in a laminar shear box, and the influence of the boundary conditions was then measured. Each model slope was created at 100, 50, and 25 cm from the soil wall, and sine wave seismic loads of the same size were inputted. The results confirmed that the acceleration was amplified by the influence of the boundary in the case of the slope being located 25 cm from the boundary, whereas the influence of the boundary conditions decreased when the slope was located at 50~100 cm.

A Experimental Study on the Stabilizing Effect of Anchors against Sliding (사면에 설치된 앵커의 활동억지효과에 대한 실험적 연구)

  • Song, Young-Suk;Hong, Won-Pyo
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.26 no.3C
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    • pp.171-180
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    • 2006
  • To investigate the stabilizing effect of anchors against sliding, a series of the model test was carried out. An apparatus was developed to perform the model test of the slope reinforced by anchors. An instrumentation system has been applied on the anchors to measure the axial force during slope failure. The maximum stabilizing effect is revealed about 0.5% of the area ratio. The initial loss of anchor force is represented about 24% of initial jacking force. This result is equaled to the proposed range(10%~25%) of the field test result(Yun, 1997). The effective jacking force corresponds to 70% of the initial jacking force. Therefore, the initial jacking force should be determined more than 30% of the design jacking force. As the initial jacking force becomes increase, the reinforced slope is transferred to brittle failure behavior due to increasing the density of slope soils.

Investigation on Failure Mechanism of Geosynthethic Reinforced Slopes (보강토 구조물 파괴 메카니즘에 관한 연구)

  • Yoo, Chung-Sik;Kim, Ki-Yeon;Lee, Sung-Woo;Lee, Bong-Won
    • Journal of the Korean Geosynthetics Society
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    • v.4 no.2
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    • pp.19-28
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    • 2005
  • This paper presents a laboratory investigation on the failure mechanism of geosynthetic reinforced slopes using 1/5-scale reduced model. The components of the model were selected with due consideration of the similitude law and the step-by-step actual wall construction procedure was closely simulated. The model tests successfully replicated the failure mechanism with relative density, slope and vertical spacing.

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Numerical model for infiltration in riverbank and its foundation (하부투수층을 고려한 제방침투 수치모델링)

  • Lee, Nam-Joo;Kim, Ji-Hyun;Yu, Kwon-Kyu
    • Proceedings of the Korea Water Resources Association Conference
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    • 2012.05a
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    • pp.541-545
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    • 2012
  • 이 연구에서는 SEEP2D 모형을 사용하여 하부에 투수지반을 갖는 제방 내부의 침투흐름에 대한 수치모의를 수행하였다. 제방의 재료는 4대강사업 낙동강 제2하구둑 건설 현장에서 채취한 시료를 사용하였으며, 입도분석과 들밀도시험을 통해 구한 제방의 건조단위중량과 다짐도 및 제방의 투수계수는 각각 $1.372g/cm^3$, 93%, 1.35 m/day이다. 투수지반층과 1:3 비탈경사를 가지는 제방모형을 제작하여 연직 이차원 정상류 침투해석 모형을 해석하는 SEEP2D 프로그램을 사용하여 나온 결과 값을 수리모형 실험 결과 값과 비교하였다. 모의조건은 0.45 m, 0.50 m, 0.55 m, 0.60 m의 4가지 수위(각각 Case1~4)조건에 대하여 수리모형실험과 동일한 조건을 수치모형에 적용하였다. 수치모형의 결과는 실험결과와 비교적 일치하였지만 제방의 비탈사면이 시작하는 부분에서는 수치모형의 결과 값보다 실험결과 값이 작은 것으로 확인되었다. 각각의 조건별로 수치해와 실험 결과값을 비교해본 결과 대체적으로 비슷한 양상을 보였지만 제방의 비탈사면이 시작하는 지점부터 수치모형의 결과 값보다 실험결과 값이 작은 것으로 확인되었다. Case3의 경우 4.35 m 지점부터 6.00 m 지점까지 유출이 발생하였으며 수치모형의 결과값과 실험결과 값의 차이가 가장 작게 나타났다. 사면유출 길이는 Case4에서 가장 길게 나타났으며 최대 4.10 cm로 발생하였다.

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Assessment of runoff and sediment yield of So-Okcheon watershed using SWAT model and GeoWEPP model considering hillslope hydrological concept (SWAT 모형과 hillslope hydrological 개념의 GeoWEPP 모형을 이용한 소옥천 유역의 유출 및 토사유출량 평가)

  • Kim, Yoonkyung;Kim, Minseok;Jung, Kwansue
    • Proceedings of the Korea Water Resources Association Conference
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    • 2017.05a
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    • pp.200-200
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    • 2017
  • 강우에 의한 토양 침식 및 토사유츨량은 하천 및 유역환경관리 관점에서 가장 중요한 인자 중 하나로 보고되고 있으며, 다양한 분야에서 이에 대한 연구를 수행 중에 있다. 일반적으로 유역에서 발생한 토양침식 및 물의 이동에 의한 토사유출량을 해석하기 위해 SWAT 등과 같은 많은 모형이 적용되고 있지만, 대부분 농업지역에서 이용하는 수평형태의 수문학적 개념에 따른 overland flow 개념을 이용하고 있다. 하지만, 우리나라는 약 70% 이상이 산림으로 이루어진 지역으로 유역환경 해석에 있어 수평적인 개념과 함께 사면내에서 lateral flow와 같은 지표하 흐름의 이동에 관한 개념 역시 필요하지만, 이의 영향에 대한 관련 연구는 부족하다. 최근 수문학의 발달과 더불어 수평적인 개념을 탈피한 사면수문학 개념이 전 세계적으로 발달하고 있으며, 많은 발전을 이루고 있다. 이를 통해 GIS를 기반으로 물리학기반의 GeoWEPP 모형이 미국을 중심으로 개발되었고, 이에 대한 많은 적용 및 평가가 이루어지고 있다. 본 연구에서는 전 세계적으로 평가받고 있는 process 기반의 SWAT 모형과 사면수문학 개념을 반영한 물리학기반의 GeoWEPP 모형을 이용하였다. 이 두 모형은 강우, 지형, 토양도, 토지피 복도 등 두 모형의 입력자료 역시 거의 동일하게 구성되어 있으며, 같은 FORTRAN CODE 및 ArcGIS에서 운영될 수 있도록 이루어져 있어 비교 분석하기 원활하다. 모형의 적용은 매년 심각한 조류가 발생하는 대청호 지류인 소옥천 유역내 중하류에 위치한 옥각교에서 관측된 모니터링 자료(토사유출량과 유출량)를 이용하여 모형의 정확성을 평가 후, 사면수문학 개념의 적용성에 대해 논하였다. 각각의 모형의 결과에 대한 정확성 평가는, Nash-Sutcliffee를 이용하여 실시하였다.

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Estimation of Infiltration and Simulation of Seepage Behavior in Slope using the Rainfall Data in Seoul (서울지역 강우자료를 이용한 침투량 산정과 사면에서의 침투거동 모의)

  • Lee, Il-Ju;Oh, Tae-Suk;Moon, Young-Il
    • Journal of the Korean Society of Hazard Mitigation
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    • v.8 no.5
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    • pp.103-109
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    • 2008
  • Precipitation on slope is separated into infiltration and outflow according to physical properties of soil and slope. However, the slope analysis is assumed that all precipitation are percolated. So, groundwater level is excessive tend to be calculated. In this paper, NRCS model and Horton models that have a suitability were used for agro-type analysis of Seoul station after precipitation was separated into infiltration and outflow. Also, gradient of slope was analyzed about seepage behavior and underground water level aspect through numerical analysis. After inclination correction, the estimated infiltration was compose of slopes much applied by domestic design standard. The change of groundwater level is appeared greatly as agro-type goes from D type to A type in the analysis results.

A Experimental Study on the Variation of the Pore-water Pressure in the Soil Slope during the Rainfall (강우시 토사사면내의 간극수압변화에 관한 실험적 고찰)

  • Jeung, Eujung;Kim, Hongtaek;Jang, Hyunik;Kim, Kyungsuk;Kang, Inkyu
    • Journal of the Korean GEO-environmental Society
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    • v.9 no.1
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    • pp.33-40
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    • 2008
  • In this research, model tests have been performed for researching the seepage characteristics in the finite soil slope during the rainfall using a manufactured rainfall simulator. On the basis of the results, it has been analyzed how to change the seepage characteristics due to the duration time of rainfall. We are found that the pore-water pressure was gradually increased as increasing the duration time of rainfall. Specially, at the beginning of rainfall, the pore-water pressure in the middle surface of slope was measured larger than any point. As increasing the duration time of rainfall, the pore-water pressure at the inner part of slope was increased greatly at the collapse due to infiltrating the pore-water within the slope. In the research, it was not easy to get various test results because measuring instruments are high sensitivity and difficult to handle. For the future, the model test results are needed for the various slope angle.

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Pore Water Pressure Characteristic of Unsaturated Weathered Granite Soil Slopes through Rainfall Simulation (강우재현모형실험에 의한 불포화 화강풍화토 사면의 간극수압 특성)

  • Kim, Sun-Hak
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.10 no.11
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    • pp.3287-3295
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    • 2009
  • This present study implemented a rainfall simulation system, and performed simulation and numerical analysis according to rainfall and slope conditions using a model slope built with weathered granite soil. Extensive analysis were conducted on the characteristics of changes in volumetric water content and pore water pressure measured in the simulation, and compared them with the results of numerical analysis. It took longer for the volumetric water content to reach the limit when rainfall intensity was high and the slope was steep and shorter when rainfall intensity was low and the slope was gentle. When rainfall intensity was low and the duration of rainfall was short, negative pore water pressure was higher and the time for restoration was shorter. On the contrary, when rainfall intensity was high and the duration of rainfall was long, it took a longer time to restore negative pore water pressure. In the results of rainfall simulation and numerical analysis, the distribution of volumetric water content and pore water pressure was similar between the two. However, the volumetric water content was different by up to 5%, and pore water pressure by up to 3kPa.

Study on Landslide Flume Tests Using Stability Analysis of the Unsaturated Infinite Slope (불포화 무한사면의 안정해석을 활용한 산사태 모형실험에 관한 연구)

  • Song, Hyo-Sung;Chae, Byung-Gon;Song, Young-Suk;Choi, Jung-Hae;Seo, Won-Gyo;Woo, Ik
    • The Journal of Engineering Geology
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    • v.29 no.4
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    • pp.541-552
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    • 2019
  • In this study, landslide flume tests were performed to analyze characteristics of ground characteristics and landslide occurrence due to rainfall infiltration. As test materials, weathered granite soil and gneiss soil, the most frequent landslides in Korea, were used, and landslides were triggered by heavy rain (Intensity = 200 mm/hr). The measurement sensors were installed with 3 sets at toe, slope, top part and shallow (GL-0.2 m), middle (GL-0.4 m), and deep (GL-0.6 m) depth in the slope and measured at 10 second intervals. After landslide flume tests, the slope stability analysis was performed by applying the unsaturated soil theory based on the change of ground characteristics and compared with actual landslide occurrence from flume test. As a result of the analysis, factor of safety reflected the landslide occurrence from flume test and factor of safety decreased as rainfall infiltration, leading to slope failure. Finally we compared to the factor of safety below 1 and actual landslide occurrence time, the average difference was 1,600 seconds for weathered granite soil and 5,400 seconds for weathered gneiss soil.

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

  • SaGong Myung;Kim Min-Seok;Kim Soo-Sam;Lee In-Yong
    • Journal of the Korean Geotechnical Society
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    • v.22 no.5
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    • pp.83-91
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    • 2006
  • Recently, the intensive rainstorm possibly induced by global warming plays a key role on the instability of railway adjacent slopes. The instability of slopes results as covering and loss of railway lines induced by slided soil mass. According to the site investigation on the failed slopes triggered by rainfall, low types of slope failure were observed: shallow, intermediate, gully erosion, and soil-rock interface failures. The observation reveals the different characteristics of slope failure depending on the thickness of soil layer, morphological features of slope, etc. Based upon the observations, flume tests were conducted to analyze the sliding mechanism of each failure. The variables of flume test are soil layer thickness, rainfall intensity, and morphology of slope under the constant condition of the percentage of fine, initial soil moisture content, slope angle and compaction energy. Test results show that shallow failure was mostly observed from the surface of the slope and caused by the soil erosion; in addition, compared to the other types of failure, the occurrence of initial erosion is late, however, the development of erosion is fast. In gully erosion failure, the collected water from the water catchment area helps erosion of the upper soil layer and transfer of residual corestone, which impedes the erosion process once the upper soil layers are eroded and corestone are exposed. The soil-rock interface failure shows the most fast initial erosion process among the failure types. Interestingly, the common feature observed from the different types of failure was the occurrence of the initial deformation near the toe of slopes which implies the existence of surbsurface flow along the downslope direction.