• 제목/요약/키워드: $FLAC^{2D}$

검색결과 133건 처리시간 0.023초

Assessment of time-dependent behaviour of rocks on concrete lining in a large cross-section tunnel

  • Mirzaeiabdolyousefi, Majid;Nikkhah, Majid;Zare, Shokrollah
    • Geomechanics and Engineering
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    • 제29권1호
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    • pp.41-51
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    • 2022
  • Tunneling in rocks having the time-dependent behavior, causes some difficulties like tunnel convergence and, as a result, pressure on concrete lining; and so instability on this structure. In this paper the time-dependent behaviour of squeezing phenomenon in a large cross section tunnel was investigated as a case study: Alborz tunnel. Then, time-dependent behaviour of Alborz tunnel was evaluated using FLAC2D based on the finite difference numerical method. A Burger-creep viscoelastic model was used in numerical analysis. Using numerical analysis, the long-time effect of squeezing on lining stability was simulated.This study is done for primary lining (for 2 years) and permanent lining (for 100 years), under squeezing situations. The response of lining is discussed base on Thrust Force-Bending Moment and Thrust Force-Shear Force diagrams analysing. The results determined the importance of consideration of time-dependent behaviour of tunnel that structural forces in concrete lining will grow in consider with time pass and after 70 years can cause instability in creepy rock masses section of tunnel. To show the importance of time-dependent behavior consideration of rocks, elastic and Mohr-Coulomb models are evaluated at the end.

극한 기후 조건하에서 풍화된 화강암반 절취사면에 대한 장기적 안정성 연구 (Long Term Stability of Slopes Excavated in Weathered Granite Rock Masses Subjected to Extreme Climatic Conditions)

  • 양광용;박연준;유광호;우익;박찬
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2003년도 봄 학술발표회 논문집
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    • pp.655-662
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    • 2003
  • Slope stability is an important issue ill civil engineering works or in open pit mines where both economy and efficiency is required. These are the long-term stability problems which depend on the change of physical properties under a certain weather condition. These can also result in progress of weathering which can change mechanical or hydro-geological properties of rock mass considerably. In this study, weathering in nature was simulated by freeze-thaw test and Soxhlet test which represent mechanical and chemical weathering respectively. Measured were elastic wave velocities, absorption rate, volume change. Uniaxial compression strengths before and after the weathering tests were also measured. The change in weight and volume of the specimens were not clearly related to the weathering process, but P, S wave velocities were clearly decreased as weathering progresses. For some class of rocks, P-wave velocity was increased probably because of the saturation due to improved connectivity of the pre-existing pores. Based on the test results, stability of the slopes were analyzed using FLAC$\^$2D/. Due to the reduced strength parameters, the factors of safety were decreased for the selected sites.

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쏘일네일링 공법을 적용한 영구 지하굴착 벽체의 설계사례 연구 (Design Case Study of Permanent Excavation Wall Using Soil Nailing System)

  • 박시삼;이제만;유찬호;김홍택
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2005년도 지반공학 공동 학술발표회
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    • pp.84-91
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    • 2005
  • In case of soil nailing system, there have been many attempts to expand into slope and temporary earth retaining system stabilization method since the first ground excavation earth retaining system construction in 1993. Recently, jointing wall, underground wall of buildings and excavation earth retaining wall, construction were increasingly applied for effective utilization of the limited underground space and land application maximized. However, the application of joining wall into retaining wall or building by temporary soil nailing system and design of permanent wall were performed by using Rankine earth pressure theory without considering the distribution of earth pressure in the soil nailing. In this study was performed to introduce the design case by 'Two-Body Translation mechanism (TBTM)' to be able to consider distribution of earth pressure in the soil nailing when designing the permanent jointing wall using soil nailing system for effective utilization of ground space. Also, this study attempts to evaluate the earth pressure change, decreasing effect of wall displacement and increasing effect of stability when advanced soil nailing system is constructed using $FLAC^{2D}$ ${\nu}er.$ 3.30 program and 'Two-Body Translation mechanism'.

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Optimal pre-conditioning and support designs of floor heave in deep roadways

  • Wang, Chunlai;Li, Guangyong;Gao, Ansen;Shi, Feng;Lu, Zhijiang;Lu, Hui
    • Geomechanics and Engineering
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    • 제14권5호
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    • pp.429-437
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    • 2018
  • In order to reduce deformation of roadway floor heave in deep underground soft rockmass, four support design patterns were analyzed using the Fast Lagrangian Analysis of Continua (FLAC)3D, including the traditional bolting (Design 1), the bolting with the backbreak in floor (Design 2), the full anchorage bolting with the backbreak in floor (Design 3) and the full anchorage bolting with the bolt-grouting backbreak in floor (Design 4). Results show that the design pattern 4, the full anchorage bolting with the bolt-grouting backbreak in floor, was the best one to reduce the deformation and failure of the roadway, the floor deformation was reduced at 88.38% than the design 1, and these parameters, maximum vertical stress, maximum horizontal displacement and maximum horizontal stress, were greater than 1.69%, 5.96% and 9.97%. However, it was perfectly acceptable with the floor heave results. The optimized design pattern 4 provided a meaningful and reliable support for the roadway in deep underground coal mine.

지반굴착시 지반/구조물 상호작용이 고려된 구조물의 거동 평가 연구 (The Behavior of Adjacent Structures in Urban Excavation Considering Soil-Structure Interaction)

  • 양성우;김찬국;황의석;김주철;김학문
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2006년도 춘계 학술발표회 논문집
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    • pp.1024-1031
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    • 2006
  • In this study using the finite different programs, FLAC2D to define affection of the soil-structure interface in evaluating the behavior of adjacent structures according to excavation, and tried to compare each the results of different 46 cases which were various condition of stories, length and locations from the excavation site. In the result of the numerical analysis, the affection of the interface was affected by the building stories, locations from the excavation site and shape ratio(length/height). Therefore, in the considering soil-structure interaction in the damage assessment and the behavior of the adjacent structures when excavation, is important in more accurate evaluation of the movement of structure. Also, the interface modification factor were proposed which can consider the interface.

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Deflection and buckling of buried flexible pipe-soil system in a spatially variable soil profile

  • Srivastava, Amit;Sivakumar Babu, G.L.
    • Geomechanics and Engineering
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    • 제3권3호
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    • pp.169-188
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    • 2011
  • Response of buried flexible pipe-soil system is studied, through numerical analysis, with respect to deflection and buckling in a spatially varying soil media. In numerical modeling procedure, soil parameters are modeled as two-dimensional non-Gaussian homogeneous random field using Cholesky decomposition technique. Numerical analysis is performed using random field theory combined with finite difference numerical code FLAC 5.0 (2D). Monte Carlo simulations are performed to obtain the statistics, i.e., mean and variance of deflection and circumferential (buckling) stresses of buried flexible pipe-soil system in a spatially varying soil media. Results are compared and discussed in the light of available analytical solutions as well as conventional numerical procedures in which soil parameters are considered as uniformly constant. The statistical information obtained from Monte Carlo simulations is further utilized for the reliability analysis of buried flexible pipe-soil system with respect to deflection and buckling. The results of the reliability analysis clearly demonstrate the influence of extent of variation and spatial correlation structure of soil parameters on the performance assessment of buried flexible pipe-soil systems, which is not well captured in conventional procedures.

Actual microstructure-based numerical method for mesomechanics of concrete

  • Chena, S.;Yueb, Z.Q.;Kwan, A.K.H.
    • Computers and Concrete
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    • 제12권1호
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    • pp.1-18
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    • 2013
  • This paper presents an actual microstructure-based numerical method to investigate the mechanical properties of concrete at mesoscopic level. Digital image processing technique is used to capture the concrete surface image and generate the actual 3-phase microstructure of the concrete, which consists of aggregate, matrix and interfacial transition zones. The microstructure so generated is then transformed into a mesh or grid for numerical analysis. A finite difference code FLAC2D is used for the numerical analysis to simulate the mechanical responses and failure patterns of the concrete. Several cases of concrete with different degrees of material heterogeneity and under different compression loading conditions have been analysed. From the numerical results, the effects of the internal material heterogeneities as well as the external confining stresses are studied. It is shown that the material heterogeneities arising from the presence of different phases and the existence of interfacial transition zones have great influence on the overall mechanical behaviour of concrete and that the numerically simulated behaviour of concrete with or without confining stresses applied agrees quite well with the general observations reported in the literature.

Numerical study of performance of soil-steel bridge during soil backfilling

  • Beben, Damian
    • Structural Engineering and Mechanics
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    • 제42권4호
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    • pp.571-587
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    • 2012
  • This paper presents results of a numerical analysis performed on a corrugated steel plate (CSP) bridge during a backfilling process. The analysed bridge structure was a box culvert having a span of 12315 mm as well as a clear height of 3550 mm. Obtained calculation results were compared with the experimental ones. The paper is presented with the application of the Fast Lagrangian Analysis of Continua (FLAC) program based on the finite differences method (FDM) to determine behaviour of the soil-steel bridge structure during backfilling. The assumptions of a computational 2D model of soil-steel structure with a non-linear interface layer are described. Parametric analysis of the interface element is also given in order to receive the most realistic calculation results. The method based on this computational model may be used with large success to design calculations of this specific type of structure instead of the conventional and fairly inaccurate analytical methods. The conclusions drawn from such analysis can be helpful mostly for the assessment of the behaviour of steel-soil bridge structures under loads of backfilling. In consideration of an even more frequent application of this type of structure, conclusions from the conducted analysis can be generalized to a whole class of similar structural bridge solutions.

휨인성을 고려한 강섬유보강 숏크리트 거동의 수치해석적 연구 (A Numerical Study on the Behavior of Steel Fiber Reinforced Shotcrete in Consideration of Flexural Toughness)

  • 조병욱;유광호;김수만;임두철;이상돈;박연준
    • 터널과지하공간
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    • 제17권5호
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    • pp.411-427
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    • 2007
  • 타당성 있는 터널의 설계 및 경제적 시공을 위해서는 터널해석의 신뢰성이 확보되어야 한다. 이를 위해서는 암반과 지보재의 상호 작용을 포함하여 시공 전반에 걸친 깊은 이해가 필요하다. 본 논문에서는 파괴 이후에도 지보력을 상실하지 않는 강섬유보강 숏크리트의 거동을 적절히 모델링하는 기법을 소개하였다. 강지보재의 지보 효과를 알아보기 위해 3차원 해석을 수행하였으며, 이를 통하여 새로운 하중분담율이 산정되었다. 소성모멘트한계만을 사용한 경우(PML 모델) 숏크리트에 비정상적으로 발생하던 높은 인장응력을 없앨 수 있었고, 파괴 후의 연성 거동을 모사할 수 있었으나 축력의 영향이 고려되지 못하여 실제 거동과의 괴리를 메우기에는 다소 미흡하였다. 따라서 축력과 모멘트 한계를 동시에 고려할 수 있는 방법이 필요하였는데, FLAC의 내장 모델인 liner 모델을 통하여 이러한 거동이 모사될 수 있었다. Liner 모델에서는 강섬유 보강 숏크리트의 일축압축 강도와 더불어 최대 및 잔류 인장강도도 지정이 가능하다. 이 두 가지 모델을 이용하여 4등급 및 5등급 암반에 굴착되는 2차로 터널에 대하여 해석을 수행하였다. 또한 종래에 사용되던 탄성 beam 모델을 이용한 해석도 병행하여 그 결과를 비교하였다. 탄성 beam 모델을 제외한 두 가지 모델은 탄성 beam 모델에서는 반영될 수 없었던 휨인성을 고려할 수 있었다.

가스계 소화설비 오작동으로 인한 질식사고의 피해영향 평가 (A Study on Damage Effects Assessment for Asphyxiation Accident due to Malfunction of Gas Type Fire Extinguishing System)

  • 김의수
    • 한국가스학회지
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    • 제24권2호
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    • pp.36-43
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    • 2020
  • 가스계 소화설비는 경제적으로 매우 유용한 설비이지만 설비를 갖춘 후 장기간 미사용될 경우 용기부식으로 인한 파열 현상과 설비 시스템 작동 오류 등이 나타날 가능성이 있어 큰 위험성을 내재하고 있다. 하지만 소화설비 특성 상, 설비의 정상작동 여부를 확인하기 위한 실험이 불가하여 파열 및 오작동으로 인해 밀폐공간 내에 가스가 일시적으로 방출되면 가스질식으로 인한 큰 인명 피해를 가져올 수 있다. 본 연구에서는 최근 발생한 가스계 소화설비작동 오류로 인한 질식 사망 사고를 바탕으로 사고 메커니즘을 분석하기 위해 실제사고가 발생한 현장에 대해 3D 스캐너와 FLACS를 활용하여 설비 오류로 인한 이산화탄소 가스의 유입경로와 이로 인한 사망 가능성 및 사망에 이르는 시간 등을 추정하였으며 이를 통해 질식사고로 인한 정확한 피해 영향을 평가하고자 한다.