• 제목/요약/키워드: rock slope

검색결과 776건 처리시간 0.024초

진동대 실험을 이용한 암반비탈면의 가속도 특성 (Acceleration Behavior of Rock Slope by Shaking Table Test)

  • 강종철;윤원섭;박연준
    • 한국산업융합학회 논문집
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    • 제24권6_2호
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    • pp.841-848
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    • 2021
  • This study investigated the acceleration characteristics of rock slopes when earthquakes, which have not been studied much in Korea, occur. The rock slope was modeled with a similar raw of 1/20 in consideration of the height(10m), roughness, strength, and the joint dips(20°). After the completion of the model, a shaking table tests was conducted according to the magnitude of the acceleration and the type of seismic wave. The maximum acceleration was greater in the short-period seismic wave than in the long-period seismic wave, and the maximum acceleration was larger in the small acceleration. The rock slope was close to a rigid block and a structure more vulnerable to the long period wave than to the short period wave. In the event of an earthquake smaller than the domestic earthquake-resistant maximum design acceleration(0.154g), safety management of the rock slope was required.

암반사면의 붕괴특성에 관한 연구(중앙고속도로를 중심으로) (A Study on the Failure Characteristics for the Rock Slopes (Centering Around Jungang Highway))

  • 김종렬;이진수;황평주;이용희
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2005년도 춘계 학술발표회 논문집
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    • pp.765-776
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    • 2005
  • As a result of industrial advancement and land development, a number of highway slopes have been gradually formed and numerous problems related to their stability have been frequently caused. Generally, major factors for rock slope stability are lithology, slope inclination, slope height, degree of weathering, precipitation, condition of groundwater and so onl. Many complex factors are mostly involved in the collapse of rock slopes. In this study, a database for 94 collapsed Jungang highway slopes were set up using GIS program through literature search, site investigation, geological map and Korea tectonic province map. The analyses for the collapsed factor including sort of rock(by origin), tectonic province, highway direction, slope gradient and direction, degree of weathering, slope height were carried.

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Stability analysis of infinite rock slopes with varying disturbances based on the Hoek-Brown failure criterion

  • Dowon Park
    • Geomechanics and Engineering
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    • 제33권1호
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    • pp.53-63
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    • 2023
  • Rock disturbance caused by blasting and stress relaxation is commonly observed during excavation. As the distance from the source of disturbance increases, the degree of disturbance decreases, and rock at a large depth does not experience disturbance. However, in stability analyses, a single value of disturbance is often applied to the entire rock mass, which leads to underestimated results. In this study, this modeling mistake is addressed by considering realistically varying rock disturbance. The safety of infinite slopes in a disturbed rock mass with a strength governed by the Hoek-Brown failure criterion is investigated based on the kinematic approach of limit analysis. The maximum disturbance is assigned to the outermost slope face because it is directly exposed to blasting damage and dilation, and the disturbance progressively decays with distance in the rock mass. The safety analysis results indicate that the assumption of uniform disturbance in the entire rock mass leads to underestimation of the rock strength and safety on infinite rock slopes. A critical slip surface appears to be within the disturbed rock layer as well as the interface between the disturbed upper rock and undisturbed lower rock.

수치사진측량을 이용한 암반사면 조사

  • 이종출;박운용;남신;강상민
    • 한국측량학회:학술대회논문집
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    • 한국측량학회 2003년도 춘계학술발표회 논문집
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    • pp.219-222
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    • 2003
  • Even through hundreds of meters high steep slope is stable, only several ten meters high dull slope could be collapsed. This means that stability of slope is depend on the slope of a surface of discontinuity like faults existing in rock floor. The existence and nonexistence of a discontinuity surface have a very important effect to the stability of a rock floor slope, and examination for geologic peculiarity is one of the most important pant for investigation of stabilities. Accordingly, in the study, we extracted three dimension coordinates of slope with close photogrammetry, and through interpretations of three dimensions' position of fault within rock floor slope, we expect this will be use as a important sauces when evaluate stabilities of rock floor slope.

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입체 디지털 영상처리에 의한 암반사면의 불연속면에 대한 3차원 정보 추출 (Three-Dimensional Information Extraction of Discontinuity on Rock Slope by Processing Stereo Digital Images)

  • 이동천;우익;최진옥
    • 자원환경지질
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    • 제38권4호
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    • pp.369-380
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    • 2005
  • 영상을 기반으로 한 불연속면의 방향성 측정 및 거칠기 평가에 대한 효율적이고 객관적인 기법의 적용 가능성을 제시하는데 본 연구의 목적이 있다. 현장조사 및 계측을 통한 암반사면 안정성 평가의 한계를 보완하기 위해 디지털 영상으로부터 3차원 수치 암반사면모델을 생성하여 암반사면에 대한 지형 공간적 분석을 위한 기초 정보를 도출하였다. 또한, 암반사면 내에 분포한 불연속선을 3차원적으로 추출하여 불연속면의 집중 방향성을 분석하고, 암반표면의 거칠기를 정량화할 수 있는 방법을 제시하였다. 연구결과 입체 디지털 영상으로부터 암반사면에 대한 다양한 정량적 정성적 분석이 가능한 정보를 효과적으로 추출할 수 있었으며, 이를 시각화하여 안정성 평가의 효율성과 편의성을 향상 시킬 수 있었다.

고속도로 절토사면 관리를 위한 데이타베이스 프로그램 개발 (Development of Database System(DB/SLOPE) for Management of Cut Slope in Highway)

  • 유병옥;황영철
    • 터널과지하공간
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    • 제11권3호
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    • pp.206-216
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    • 2001
  • 절토사면은 토층, 풍화토, 풍화암, 연암, 경암 등의 풍화도가 다른 물질로 구성되어 있어 지반구성물질에 대한 공학적인 판단이 쉽지 않으며, 시공 중 또는 시공 후에 사면의 안정성 문제가 대두되고 있는 실정이다. 사면의 안정성 문제는 과거 30여년 동안 고속도로의 많은 절토사면에서 경험되어 왔으며 현재에도 계속적으로 사면붕괴 및 복구를 경험하고 있으나 체계적인 관리 및 조사가 이루어지지 않고 있다. 따라서, 본 연구의 목적은 수집된 자료의 효율적인 자료분석을 통하여 절토사면을 체계적으로 관리하고자 하는데 있다. 이를 위하여 데이터베이스 프로그램을 개발하였으며, 이 관리프로그램을 활용한다면 국내에 분포하는 암반의 내적 요인들에 대한 지질 공학적인 특성을 파악할 수 있고 지역에 따라 분포하는 암석종류, 지질시대 및 지질구조에 따라 붕괴유형 및 발생빈도 등을 분석함으로써 도로 및 주택단지의 개설시 예비적인 사면안정문제를 예견할 수 있을 것으로 판단된다.

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Reliability-based Optimization for Rock Slopes

  • 이명재
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 1998년도 터널.암반역학위원회 박사학위 논문집
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    • pp.3-34
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    • 1998
  • The stability condition of rock slopes is greatly affected by the geometry and strength parameters of discontinuities in the rock masses. Rock slopes Involving movement of rock blocks on discontinuities are failed by one or combination of the three basic failure modes-plane, wedge, and toppling. In rock mechanics, practically all the parameters such as the joint set characteristics, the rock strength properties, and the loading conditions are always subject to a degree of uncertainty. Therefore, a reasonable assessment of the rock slope stability has to include the excavation of the multi-failure modes, the consideration of uncertainties of discontinuity characteristics, and the decision on stabilization measures with favorable cost conditions. This study was performed to provide a new numerical model of the deterministic analysis, reliability analysis, and reliability-based optimization for rock slope stability. The sensitivity analysis was carried out to verify proposed method and developed program; the parameters needed for sensitivity analysis are design variables, the variability of discontinuity properties (orientation and strength of discontinuities), the loading conditions, and rock slope geometry properties. The design variables to be optimized by the reliability-based optimization include the cutting angle, the support pressure, and the slope direction. The variability in orientations and friction angle of discontinuities, which can not be considered in the deterministic analysis, has a greatly influenced on the rock slope stability. The stability of rock slopes considering three basic failure modes is more influenced by the selection of slope direction than any other design variables. When either plane or wedge failure is dominant, the support system is more useful than the excavation as a stabilization method. However, the excavation method is more suitable when toppling failure is dominant. The case study shows that the developed reliability-based optimization model can reasonably assess the stability of rock slopes and reduce the construction cost.

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충전절리면의 미끄러짐특성에 관한 연구 (A Study on the Sliding Characteristics of Infilling-joint Surface)

  • 이정엽;박영목;김재석;구호본;백용
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2003년도 봄 학술발표회 논문집
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    • pp.499-502
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    • 2003
  • The purpose of this study is to understand the sliding characteristics of the infilling-joint surface using the new devised shear test apparatus with changeable slope for the original infilling materials and the infilling materials experienced cyclic freezing-thawing processes. Three types of the mother rock classified as the igneous rock, the metamorphic rock and the sedimentary rock and the infilling materials were collected for laboratory test. The cohesion according to the slope change of the rock joint shows large variation within ${\pm}$5 degrees but the internal friction angle shows appears the linear decreasing tendency. It is confirmed that the affecting factor of slope change of rock joint at the behavior of rock mass is larger than that of the infilling thickness. Test results show that the cohesion and the internal friction angle in 100 times of cyclic freezing-thawing processes are decreased about 50 percent compared with original one. A further study using various infillings materials would lead to a better understanding of the failure mechanism of rock mass by slope change of rock joint.

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진동대 실험을 통한 암반비탈면의 변위 거동 특성 (Displacements Behavior of Rock Slope by Shaking Table Test)

  • 윤원섭;강종철;박연준
    • 한국산업융합학회 논문집
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    • 제23권2_2호
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    • pp.245-254
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    • 2020
  • This study investigated the so far little-researched characteristics of the behaviors of rock slopes at the time of an earthquake. For the selection of the rock block, a proper model was formed by applying the similarity in consideration of the roughness and strength of the rock slope(10m) on the site, and shaking table tests were carried out according to seismic excitement acceleration, and seismic waves. In the case of the inclination angle of the joint plane of 20°, the long period wave at 0.3g or more at the time of the seismic excitement surpassed the length of 100mm, the permissible displacement (0.01H, H:slope height), which brought about the collapse of the rock; the short period wave surpassed the permissible displacement at 0.1g, which caused the collapse of the slope. The rock slope was close to a rigid block and a structure more vulnerable to the long period wave than to the short period wave. It collapsed in the short period wave even at the seismic amplitude smaller than the maximum design acceleration in Korea.