• 제목/요약/키워드: Excavation condition

검색결과 345건 처리시간 0.023초

암반절리와 시공단계를 고려한 지하 구조체의 해석

  • 김문겸;장정범
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 1991년도 추계학술발표회 논문집 지반공학에서의 컴퓨터 활용 COMPUTER UTILIZATION IN GEOTECHNICAL ENGINEERING
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    • pp.179-194
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    • 1991
  • This paper explains outline of a behavior analysis program for underground structures, and its application to a tunnel problem. The program can deal with elasto-plastic behavior of medium and supporting structures, discontinuous behavior due to existing joint, creation and propagation of cracks. in-situ loading condition, and incremental behavior due to stepwise excavation, etc. The program also has additional capabilities such as graphic output of mesh, displacement pattern, stress condition, and safety factor contour, and automatic mesh generation during the excavation steps.

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현장계측과 수치해석을 이용한 가설 흙막이 구조물의 변형특성 연구 (Deformation Behaviors of Temporary Tieback Wall during Excavation Works)

  • 김종우
    • 터널과지하공간
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    • 제5권3호
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    • pp.223-229
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    • 1995
  • During excavation works for underground facilities, temporary tieback wall with earth anchor system was investigated for safety's sake. An excavation 9.7 meter deep was monitored by slope inclinometer in twelve measuring points. Instrumented lateral displacements of the wall during 177 days are represented. Especially, lateral displacements of the two positions under completely different condition are compared to investigate the effect of backfilling between soldier pile and the soil behind wall. The deformation behaviors of the wall according to both depth and elasped time are discussed. Finally, a numerical analysis by the program FLAC was performed, and calculated displacements are compared to measured ones.

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Expansion of Terzaghi Arching Formula to Consider an Arbitrarily Inclined Sliding Surface and Examination of its Effect

  • Son, Moorak
    • 한국지반환경공학회 논문집
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    • 제17권7호
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    • pp.27-33
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    • 2016
  • This study expanded Terzaghi arching formula, which assumed a vertical surface as a sliding surface, to consider an arbitrarily inclined surface as a sliding surface and examined the effect of a sliding surface. This study firstly developed a formula to expand the existing Terzaghi arching formula to consider an inclined surface as well as a vertical surface as a sliding surface under the downward movement of a trap door. Using the expanded formula, the effect of excavation, ground, and surcharge conditions on a vertical stress was examined and the results were compared with them from Terzaghi arching formula. The comparison indicated that the induced vertical stress was highly affected by the angle of an inclined sliding surface and the degree of influence depended on the excavation, ground, and surcharge conditions. It is expected that the results from this study would provide a better understanding of various arching phenomenon in the future.

특정 사례터널 해석 결과 및 평가

  • 이승래;오세붕;백규호
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 1991년도 추계학술발표회 논문집 지반공학에서의 컴퓨터 활용 COMPUTER UTILIZATION IN GEOTECHNICAL ENGINEERING
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    • pp.123-132
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    • 1991
  • The GEOKST program was used to solve the tunnel example problem. The package can solve such geotechnical problem as excavation, embankment, foundations, etc., in which the soil can be modeled by various elastoplastic geomaterial models. The main objective was to consider the effects of excavation depth to the face of the tunnel on the stability of the ground and support system. Depended on the strength of the ground materials, the limit excavation depth without any support system could be established by analyzing three-dimensional excavation problem. In this given example problem, the strengths of the ground materials were enough for the stability of the tunnel without any support system up to fairly deep excavation and the maximum tunnel section displacement was stabilized as the excavation proceed. The asymptotic value was approximately the same as that of the plane strain analysis. Thus, assuming the plain strain condition and simulation the actual excavation procedure, the maximum tunnel section displacement was caculated after final step. The maximum calculated displacement occured at the top section of the tunnel geometry and was about 8mm.

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연약점성토지반의 얕은 굴착시 줄말뚝을 이용한 흙막이공 (Earth Retaining Structure Using a Row of piles during Shallow Excavation in Soft Clay)

  • 홍원표;윤종민;송영식
    • 한국지반공학회논문집
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    • 제16권1호
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    • pp.191-201
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    • 2000
  • 본 연구에서는 굴착부지가 넓고 지하수위가 높은 점성토지반에 얕은 굴착시 종래에 널리 적용되었던 강널말뚝 흙막이공 대신 줄말뚝을 이용한 흙막이공을 제안하였다. 줄말뚝을 이용한 흙막이 구조물의 거동을 관찰하기 위하여 지하굴착기간 동안 경사계 및 지하수위계를 설치하여 말뚝과 지반의 수평변위와 지하수위 변화를 조사하였다. 현장계측결과 말뚝과 지반의 변형거동은 굴착면 기울기, 말뚝두부구속조건, 말뚝설치간격, 굴착지반의 안정수 등의 요소에 영향을 받는 것으로 나타났다. 그리고 줄말뚝을 이용한 흙막이공의 시공성과 안정성뿐만 아니라 근접시공의 문제점이 없는 연약지반에서는 강널말뚝 흙막이공보다 경제적인 공법임을 확인하였다.

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Stability evaluation for the excavation face of shield tunnel across the Yangtze River by multi-factor analysis

  • Xue, Yiguo;Li, Xin;Qiu, Daohong;Ma, Xinmin;Kong, Fanmeng;Qu, Chuanqi;Zhao, Ying
    • Geomechanics and Engineering
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    • 제19권3호
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    • pp.283-293
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    • 2019
  • Evaluating the stability of the excavation face of the cross-river shield tunnel with good accuracy is considered as a nonlinear and multivariable complex issue. Understanding the stability evaluation method of the shield tunnel excavation face is vital to operate and control the shield machine during shield tunneling. Considering the instability mechanism of the excavation face of the cross-river shield and the characteristics of this engineering, seven evaluation indexes of the stability of the excavation face were selected, i.e., the over-span ratio, buried depth of the tunnel, groundwater condition, soil permeability, internal friction angle, soil cohesion and advancing speed. The weight of each evaluation index was obtained by using the analytic hierarchy process and the entropy weight method. The evaluation model of the cross-river shield construction excavation face stability is established based on the idea point method. The feasibility of the evaluation model was verified by the engineering application in a cross-river shield tunnel project in China. Results obtained via the evaluation model are in good agreement with the actual construction situation. The proposed evaluation method is demonstrated as a promising and innovative method for the stability evaluation and safety construction of the cross-river shield tunnel engineerings.

2차원 및 3차원 해석에 의한 토류벽의 변위에 관한 비교 연구 (A Relative Study on the Displacement of Earth Retaining Wall by 2 and 3 Dimentional Analysis)

  • 박춘식;박해찬;김종환;박영준
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2010년도 춘계 학술발표회
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    • pp.801-810
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    • 2010
  • Until now, design of Earth Retaining is practiced by 2nd dimensional analysis for convenience of analysis and time saving. However, the construction field is 3rd dimension, in this study, practised the 3rd dimensional analysis which can reflect the field condition more exactly the scope of earth retaining wall, and researched about the effective and economical way of design, compared and reviewed with the results, by practising both the 2nd and 3rd dimensional analysis. existing 2nd dimension. the depth of excavation, depth of embedded and soil condition. As result, under the whole conditions, more displacement came to appear to the value as result of 3rd dimensional analysis more than the result of 2nd dimensional analysis. Accordingly, the displacement by the 2nd dimension analysis is underestimated. Moreover, results of 2nd and 3rd dimensional analysis, there is no difference at displacement, when the depth of embedded is 0.5H, 1.0H and 1.5H, but Displacement of 1.5H is smaller than 0.5H, 1.0H. That is, the bigger the depth of embedded becomes, the displacement of Earth Retaining Wall appeared smaller. The displacement of earth retaining wall according to depth of excavation appeared bigger, when the depth of excavation is increased. In the meantime, when the soil condition is different, in the 2nd dimensional analysis, the displacement appeared biggest, in case of the clay layer, but in the 3rd dimensional analysis, in the beginning of excavating, the displacement of earth retaining wall appeared bigger in case of clay layer, but as excavating is in progress, the displacement of both compound soil layer and sand layer appeared big.

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Experimental investigation of earth pressure on retaining wall and ground settlement subjected to tunneling in confined space

  • Jinyuan Wang;Wenjun Li;Rui Rui;Yuxin Zhai;Qing He
    • Geomechanics and Engineering
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    • 제32권2호
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    • pp.179-191
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    • 2023
  • To study the influences of tunneling on the earth pressure and ground settlement when the tunnel passes through the adjacent underground retaining structure, 30 two-dimensional model tests were carried out taking into account the ratios of tunnel excavation depth (H) to lateral width (w), excavation width (B), and excavation distance using a custom-made test device and an analogical soil. Tunnel crossing adjacent existing retaining structure (TCE) and tunnel crossing adjacent newly-built retaining structure (TCN) were simulated and the earth pressure variations and ground settlement distribution during excavation were analyzed. For TCE condition, the earth pressure increments, maximum ground settlement and the curvature of the ground settlement curve are negatively related to H/B, but positively related to H/s and H/w. For TCN condition, most trends are consistent with TCE except that the earth pressure increments and the curvature of ground settlement curve are negatively related to H/w. The maximum ground settlement is larger than that observed in tunnel crossing the existing underground structure. This study provides an assessment basis for the design and construction under confined space conditions.

암반지층 굴착벽체 발생토압에 대한 단계별 굴착깊이의 영향 (Effect of Step-Wise Excavation Depth on the Earth Pressure against an Excavation Wall in Rock Mass)

  • 손무락;솔로몬 아데도쿤
    • 한국지반공학회논문집
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    • 제30권2호
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    • pp.43-52
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    • 2014
  • 본 논문은 암반지층에 설치되는 굴착벽체에 발생하는 토압에 대한 단계별 굴착깊이의 영향을 조사한 것이다. 암반지층에서 발생하는 문제들을 다루기 위해 개별요소법에 근거한 수치해석적 매개변수해석을 수행하였다. 수치해석은 매개변수로서 단계별 굴착깊이, 암반종류 및 절리조건(절리면의 전단강도 및 절리경사각)을 고려하였다. 암반지층에서 발생된 토압과 토사지반에서의 경험토압인 Peck토압이 서로 비교되었다. 비교결과 암반지층에서 발생된 토압은 암반의 종류 및 절리조건에 따라서 크게 영향을 받았으며, 단계별 굴착깊이의 영향은 암반상태가 나빠질수록 증가하는 것으로 나타났다. 더불어, 암반지층에 설치된 굴착벽체에 발생하는 토압은 토사지반에 대한 Peck의 경험토압과는 크게 다를 수 있다는 결과를 얻었다.

지반굴착 흙막이공의 정보화시공 종합관리를 위한 역해석 프로그램 개발 (Development of Back Analysis Program for Total Management Using Observational Method of Earth Retaining Structures under Ground Excavation)

  • 오정환;조철현;김성재;백영식
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2001년도 정보화시공 학술발표회
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    • pp.103-122
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    • 2001
  • For prediction of ground movement per the excavation step, observational results of ground movement during the construction was very different with prediction during the analysis of design. step because of the uncertainty of the numerical analysis modelling, the soil parameter, and the condition of a construction field, etc. however accuratly numerical analysis method was applied. Therefore, the management system through the construction field measurement should be achieved for grasping the situation during the excavation. Until present, the measurement system restricted by ‘Absolute Value Management system’only analyzing the stability of present step was executed. So, it was difficult situation to expect the prediction of ground movement for the next excavation step. In this situation, it was developed that ‘The Management system TOMAS-EXCAV’ consisted of ‘Absolute value management system’ analyzing the stability of present step and ‘Prediction management system’ expecting the ground movement of next excavation step and analyzing the stability of next excavation step by‘Back Analysis’. TOMAS-EXCAV could be applied to all uncertainty of earth retaining structures analysis by connecting ‘Forward analysis program’ and ‘Back analysis program’ and optimizing the main design variables using SQP-MMFD optimization method through measurement results. The application of TOMAS-EXCAV was confirmed that verifed the three earth retaing construction field by back analysis.

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