• 제목/요약/키워드: near rock face

검색결과 21건 처리시간 0.018초

The numerical study of seismic behavior of gravity retaining wall built near rock face

  • Taravati, Hossein;Ardakani, Alireza
    • Earthquakes and Structures
    • /
    • 제14권2호
    • /
    • pp.179-186
    • /
    • 2018
  • We present the accurate investigation the seismic behavior of the gravity retaining wall built near rock face based on numerical method. The retaining wall is a useful structure in geotechnical engineering, where the earthquake is a common phenomenon; therefore, the evaluation of the behavior of the retaining wall during an earthquake is essential. However, in all previous studies, the backfill behind the wall was usually approximated by a homogeneous region, while in contrast, in practice, in many cases retaining walls are used to support the soil pressure in, inhomogeneous, mountainous area. This suggests an accurate investigation of the problem, i.e., numerical analysis. The numerical results will be compared with some of recently proposed analytical methods to show the accuracy of the proposed method. We show that increasing the volume of the rock face yields decreasing the permanent horizontal displacement of the gravity retaining wall built near rock face. Besides, we see that the permanent horizontal displacement of the gravity retaining wall with homogenous backfill is more than permanent horizontal displacement of the gravity retaining wall case of the built near rock face in different frequency contents.

도심지 대심도 암반굴착공사에서의 자동계측 활용에 의한 붕괴방지 사례 (A Stability Case on the Deep Rock Excavation Site in Urban Area by Automatic Monitoring System)

  • 김태섭;조남신;정창원
    • 한국지반공학회:학술대회논문집
    • /
    • 한국지반공학회 2010년도 춘계 학술발표회
    • /
    • pp.1433-1437
    • /
    • 2010
  • The deep excavation work in Korean downtown is almost excuted near by existing structures and utility lines because of the diminution of available yard for construction. So, it was required more and more that the accurate control of displacement on the earth retaining system for minimizing the popular complaint and the damage from constructional accident. Automatic monitoring system is adopted in fracture zone for real time monitoring. In addition, Face mapping is carried out on the face of fracture zone according to excavation sequence. As the result of automatic monitoring system and face mapping, we was able to take the necessary reinforcement and changing excavation method within suitable time. This paper is informed about a stability case on the deep rock excavation site with fracture zone in urban area by automatic monitoring system.

  • PDF

천공데이터를 이용한 터널 굴진면 전방 암반강도 예측 (Prediction of Rock Mass Strength Ahead of Tunnel Face Using Hydraulic Drilling Data)

  • 김광염;김성권;김창용;김광식
    • 터널과지하공간
    • /
    • 제19권6호
    • /
    • pp.479-489
    • /
    • 2009
  • 터널 굴착시 굴진면 전방의 지반상태를 사전에 파악하는 것은 터널의 안정성을 증가시킴과 동시에 시공성을 향상시켜 경제적인 터널 시공을 할 수 있도록 한다. 이에 본 연구에서는 터널 천공시 획득되는 천공데이터를 이용하여 굴진면 전방의 암반강도를 예측하고자 하였다. 이는 암반강도가 현장에서 암반분류 및 지보패턴 설계 등의 핵심인자로 가장 보편적으로 활용될 뿐만 아니라, 암반강도의 변화를 통해 굴진면 전방의 지반상태 변화를 예측하는데도 활용할 수 있기 때문이다. 이를 위해 본 연구에서는 다양한 강도 특성을 보이는 균질한 암석시험편을 대상으로 착암기 종류를 변화시켜가며 천공실험을 수행하였다. 실험결과 천공속도는 다른 천공데이터들과 착암기의 종류 및 암석의 강도에 따라 고유한 값을 보이는 것으로 나타났다. 또한, 동일한 암석에 대해 천공시 타격압이 증가하면 천공속도는 선형적으로 비례하여 증가하는 것으로 나타났다. 이러한 결과를 바탕으로 본 연구에서는 터널 시공 현장에서 착암기의 제원, 현장 계측 데이터 및 천공속도와 암반강도의 상관관계를 이용하여 터널 굴진면 전방의 암반강도를 예측할 수 있는 방안을 제안하였다.

Main challenges for deep subsea tunnels based on norwegian experience

  • Nilsen, Bjorn
    • 한국터널지하공간학회 논문집
    • /
    • 제17권5호
    • /
    • pp.563-573
    • /
    • 2015
  • For hard rock subsea tunnels the most challenging rock mass conditions are in most cases represented by major faults/weakness zones. Poor stability weakness zones with large water inflow can be particularly problematic. At the pre-construction investigation stage, geological and engineering geological mapping, refraction seismic investigation and core drilling are the most important methods for identifying potentially adverse rock mass conditions. During excavation, continuous engineering geological mapping and probe drilling ahead of the face are carried out, and for the most recent Norwegian subsea tunnel projects, MWD (Measurement While Drilling) has also been used. During excavation, grouting ahead of the tunnel face is carried out whenever required according to the results from probe drilling. Sealing of water inflow by pre-grouting is particularly important before tunnelling into a section of poor rock mass quality. When excavating through weakness zones, a special methodology is normally applied, including spiling bolts, short blast round lengths and installation of reinforced sprayed concrete arches close to the face. The basic aspects of investigation, support and tunnelling for major weakness zones are discussed in this paper and illustrated by cases representing two very challenging projects which were recently completed (Atlantic Ocean tunnel and T-connection), one which is under construction (Ryfast) and one which is planned to be built in the near future (Rogfast).

터널 굴착시 암반예측시스템 개발(솔안터널) (Development of Rockmass Predictiom System during tunnel excavation(Sol-An Tunnel))

  • 김용일;조상국;양종화;김장수;이내용
    • 한국철도학회:학술대회논문집
    • /
    • 한국철도학회 2003년도 춘계학술대회 논문집
    • /
    • pp.53-67
    • /
    • 2003
  • In this paper, a new systematic method will be introduced, in which a Rock-mass Prediction System(RPS) predicts the geological conditions and rock mass movements before tunnel excavation and the appropriate counter-measures are taken in the expected weak zones during tunnel construction. The Rock-mass Prediction System(RPS) consists of the LIM, a horizontal con drilling and a seismic exploration method (TSP/HSP). In the Rock-mass Prediction System(RPS), the seismic exploration method (TSP/HSP) gives information on the locations of the weak zones such as major faults and voids in wide-range, and the horizontal core drillings are utilized to find exact location and widths of the faults or voids near the weak zones which was predicted by the seismic exploration method (TSP/HSP). The LIM is used to find the hardness of the rock mass and small weak zones near the excavation face. The Rock-mass Prediction System(RPS) was successfully applied to the Sol-An Tunnel and the effectiveness of the system was verified.

  • PDF

터널 굴착시 암반예측시스템 적용사례 (솔안터널) (Application of Rockmass Prediction System during tunnel excavation(Sol-An Tunnel))

  • 김용일;조상국;양종화;김장수;이내용
    • 한국암반공학회:학술대회논문집
    • /
    • 한국암반공학회 2003년도 춘계학술발표회 논문집
    • /
    • pp.13-30
    • /
    • 2003
  • 본 고에서는 터널 굴착전 대상지반의 지질상태 및 암반거동을 암반예측시스템(RPS)을 통해 사전에 예측하고, 시공중 취약구간에 대해 적절한 대응을 하는 새로운 종합적인 방법을 소개하고자 한다. 암반예측시스템(RPS)은 선진보링(LIM), 선진수평시추, 탄성파탐사(TSP/HSP)로 구성되어 있다. 암반예측시스템에서 탄성파탐사(TSP/HSP)는 주요 단층과 공동등 연약대의 위치에 대한 개략적인 정보를 제공하며, 선진수평시추는 탄성파탐사(TSP/HSP)에 의해 예측된 연약대 전방에서 단층 또는 공동의 위치와 폭을 확인하는 데 활용된다. 선진보링(LIM)은 암반의 연경도와 굴착면 부근의 작은 연약대를 발견하는 데 활용된다. 암반예측시스템(RPS)은 영동선 철도현장의 솔안터널에 성공적으로 적용되어 그 효용성이 입증되었다.

  • PDF

잠제상에 설치된 표식암(의암)에 작용하는 규칙파파력의 실험적 연구 (Wave force Acting on the Artificial Rock installed on a Submerged Breakwater in a Regular Wave field)

  • 배기성;허동수
    • 한국해양공학회지
    • /
    • 제16권6호
    • /
    • pp.7-17
    • /
    • 2002
  • Recently, artificial rocks, instead of buoys, have been placed on the submerged breakwater to indicate its location. The accurate estimation of wave forces on these rocks is deemed necessary for their stability design. Characteristics of the wave force, however, are expected . to be very complicated because of the occurrence of breaking or post-breaking waves. In this regard, wave forces exerted on an artificial rock have been investigated in this paper. The maximum wave force has been found to strongly dependent on the location and shape of the artificial rock that is placed on the submerged breakwater. The plunging breaker occurs near the loading cram edge of a submerged breakwater, which cause impulsive breaking wave force on the rock. Using the Morison equation, with the velocity and acceleration at the front face of the artificial rock and varying water surface level, it is possible to estimate wave forces, even impulsive breaking wave forces, that are acting on the rock installed on a submerged breakwater. The vertical wave force is also found to depend, significantly, on the buoyant force.

대단면 급속시공을 위한 최적의 곡면막장형상개발에 관한 현장실험 (Field Experiment on the Optimization of Concave-Shaped Face Development for Rapid Tunnel-Whole-Face Excavation)

  • 김태형;윤지선
    • 한국터널지하공간학회 논문집
    • /
    • 제8권1호
    • /
    • pp.65-76
    • /
    • 2006
  • 기존의 NATM과 같은 터널공법에서는 불착 직후 벽연은 숏크리트나 록볼트에 의하여 지지되기 때문에 재래공법과 비교하여 암반의 느슨함을 감소시킬 수 있으나, 막장은 통상 무지보 상태로 놓여있기 때문에 붕괴의 위험성을 항상 내포하고 있는 것이 현실이다 현재 국내 터널시공시에는 막장이 굴진방향에 직립합A로써 응력의 집중이 발생하며 또한 막장의 안정성을 우려하여 단연분할공법을 채택하는 것이 일반적 공법으로 되어왔다. 그러나 이러한 방법은 경제적우로 큰 부당이 되며 공사기간 연장의 한 원인이 된다. 따라서 곡연막장 굴착공법을 개발하여 적용한다면 보다 나은 응력상태를 유지할 수 있어 1회 불진장의 증대 및 분할공법을 피함으로써 공사비절감 및 공사기간 단측에 매우 유리할 것이라 판단된다.

  • PDF

지하 관 시설물과 인접한 소규모 단면 터널의 발파굴착 사례 (Blast Excavation of Small Diameter Tunnel near Underground pipe lines)

  • 원연호;김강규
    • 화약ㆍ발파
    • /
    • 제28권1호
    • /
    • pp.40-54
    • /
    • 2010
  • 메사쉴드공법은 주로 풍화토 또는 풍화암 구간의 소규모 굴착단면에 적용되며 대부분 인력굴착으로 이루어지나 막장면에 암반이 노출되면 유압력을 이용한 할암공법이나 발파공법의 적용이 불가피하다. 본 연구에서는 메사쉴드공법이 적용된 소규모 굴착단면 터널에서 터널상부에 상수도관 및 가스관 등이 근접되고, 강도가 높은 암반 노출로 인해 할암공법 대신에 125g의 최소장약량으로 심발공에서 초기진동을 제어하는 발파공법을 소규모 굴착단면 터널에 적용한 사례이다.

Simulation study on effects of loading rate on uniaxial compression failure of composite rock-coal layer

  • Chen, Shao J.;Yin, Da W.;Jiang, N.;Wang, F.;Guo, Wei J.
    • Geomechanics and Engineering
    • /
    • 제17권4호
    • /
    • pp.333-342
    • /
    • 2019
  • Geological dynamic hazards during coal mining can be caused by the failure of a composite system consisting of roof rock and coal layers, subject to different loading rates due to different advancing velocities in the working face. In this paper, the uniaxial compression test simulations on the composite rock-coal layers were performed using $PFC^{2D}$ software and especially the effects of loading rate on the stress-strain behavior, strength characteristics and crack nucleation, propagation and coalescence in a composite layer were analyzed. In addition, considering the composite layer, the mechanisms for the advanced bore decompression in coal to prevent the geological dynamic hazards at a rapid advancing velocity of working face were explored. The uniaxial compressive strength and peak strain are found to increase with the increase of loading rate. After post-peak point, the stress-strain curve shows a steep stepped drop at a low loading rate, while the stress-strain curve exhibits a slowly progressive decrease at a high loading rate. The cracking mainly occurs within coal, and no apparent cracking is observed for rock. While at a high loading rate, the rock near the bedding plane is damaged by rapid crack propagation in coal. The cracking pattern is not a single shear zone, but exhibits as two simultaneously propagating shear zones in a "X" shape. Following this, the coal breaks into many pieces and the fragment size and number increase with loading rate. Whereas a low loading rate promotes the development of tensile crack, the failure pattern shows a V-shaped hybrid shear and tensile failure. The shear failure becomes dominant with an increasing loading rate. Meanwhile, with the increase of loading rate, the width of the main shear failure zone increases. Moreover, the advanced bore decompression changes the physical property and energy accumulation conditions of the composite layer, which increases the strain energy dissipation, and the occurrence possibility of geological dynamic hazards is reduced at a rapid advancing velocity of working face.