• 제목/요약/키워드: shallow failure

검색결과 169건 처리시간 0.021초

확률변수의 분포특성을 고려한 얕은기초 신뢰성 설계 (Reliability-Based Design of Shallow Foundations Considering The Probability Distribution Types of Random Variables)

  • 김창동;김수일;이준환;김병일
    • 한국지반공학회논문집
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    • 제24권1호
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    • pp.119-130
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    • 2008
  • 얕은기초 설계시 이용되는 지반의 물리적 공학적 설계변수들은 고유변동성(inherent variability) 및 측정 오차(measurement error) 등과 같은 여러 가지 요인으로 인하여 불확실성이 필연적으로 내포되어 있다. 본 논문에서는 얕은기초 설계시 기존의 결정론적 방법에서 고려하지 못하는 지반 불확실성 등을 포함한 설계 파라미터의 분산을 고려할 수 있는 확률론적 방법의 신뢰성 설계 사례를 제시하였다. 극한지지력 산정시 확률변수(random variable)인 단위중량, 점착력 및 내부마찰각 그리고 침하량 산정시 탄성계수에 대하여 국내 지반에 대한 적정 확률분포 형태 및 통계적 특성치를 결정하였다. 각 확률변수별로 채택된 분포를 적용하여 지지력과 침하량에 관한 신뢰지수와 파괴확률을 결정하였으며, 목표 신뢰지수 또는 확률에 대한 기초폭을 결정하였다. 얕은기초의 신뢰성 설계에 있어서 정규분포의 일괄적 적용보다는 각 확률변수에 해당하는 적합한 분포형태를 적용, 분석하는 것이 바람직한 것으로 나타났다.

Modeling of shallow landslides in an unsaturated soil slope using a coupled model

  • Kim, Yongmin;Jeong, Sangseom
    • Geomechanics and Engineering
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    • 제13권2호
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    • pp.353-370
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    • 2017
  • This paper presents a case study and numerical investigation to study the hydro-mechanical response of a shallow landslide in unsaturated slopes subjected to rainfall infiltration using a coupled model. The coupled model was interpreted in details by expressing the balance equations for soil mixture and the coupled constitutive equations. The coupled model was verified against experimental data from the shearing-infiltration triaxial tests. A real case of shallow landslide occurred on Mt. Umyeonsan, Seoul, Korea was employed to explore the influence of rainfall infiltration on the slope stability during heavy rainfall. Numerical results showed that the coupled model accurately predicted the poromechanical behavior of a rainfall-induced landslide by simultaneously linking seepage and stress-strain problems. It was also found that the coupled model properly described progress failure of a slope in a highly transient condition. Through the comparisons between the coupled and uncoupled models, the coupled model provided more realistic analysis results under rainfall. Consequently, the coupled model was found to be feasible for the stability and seepage analysis of practical engineering problems.

Collapse analysis of shallow tunnel subjected to seepage in layered soils considering joined effects of settlement and dilation

  • Yang, X.L.;Zhang, R.
    • Geomechanics and Engineering
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    • 제13권2호
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    • pp.217-235
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    • 2017
  • The stability prediction of shallow buried tunnels is one of the most difficult tasks in civil engineering. The aim of this work is to predict the state of collapse in shallow tunnel in layered soils by employing non-associated flow rule and nonlinear failure criterion within the framework of upper bound theorem. Particular emphasis is first given to consider the effects of dilation on the collapse mechanism of shallow tunnel. Furthermore, the seepage forces and surface settlement are considered to analyze the influence of different dilation coefficients on the collapse shape. Two different curve functions which describe two different soil layers are obtained by virtual work equations under the variational principle. The distinct characteristics of falling blocks up and down the water level are discussed in the present work. According to the numerical results, the potential collapse range decreases with the increase of the dilation coefficient. In layered soils, both of the single layer's dilation coefficient and two layers' dilation coefficients increase, the range of the potential collapse block reduces.

세굴을 고려한 얕은 기초 교량의 동적거동 분석 및 지진 취약도 해석 (Dynamic Behavior and Seismic Fragility Analysis of Shallow Foundation Bridge Considering Scour)

  • 김나연;송종걸
    • 한국지진공학회논문집
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    • 제20권2호
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    • pp.79-89
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    • 2016
  • If scour is occurred at shallow foundation of bridge, seismic performance of the bridge will be reduced. In order to evaluate accurate seismic response of bridge according to scour depths, modeling of foundation reflecting scour effect is important. In this study, taking into account the effect of the reduction in embedment depth of the shallow foundation by scouring, the soil around the foundation is modelled as an equivalent soil spring with various stiffness. Seismic fragility analyses for 3 types of bridges subjected to 4 types of ground motions classified into Site Class A, B, C, D are evaluated according to several scour depths. From the fragility analysis results, it can be observed that the deeper the scour depth, the higher probability of exceeding damage states. Also, seismic failure probability of asymmetric bridge is higher than that of symmetric bridge.

3D stability of shallow cavity roof with arbitrary profile under influence of pore water pressure

  • Luo, W.J.;Yang, X.L.
    • Geomechanics and Engineering
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    • 제16권6호
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    • pp.569-575
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    • 2018
  • The stability of shallow cavities with an arbitrary profile is a difficult issue in geotechnical engineering. This paper investigates this problem on the basis of the upper bound theorem of limit analysis and the Hoek-Brown failure criterion. The influence of pore pressure is taken into consideration by regarding it as an external force acting on rock skeleton. An objective function is constructed by equating the internal energy dissipation to the external force work. Then the Lagrange variation approach is used to solve this function. The validity of the proposed method is demonstrated by comparing the analytical solutions with the published research. The relations between shallow and deep cavity are revealed as well. The detaching curve of cavity roof with elliptical profile is obtained. In order to facilitate the application of engineering practice, the numerical results are tabulated, which play an important role in tunnel design and stability analysis of roof. The influential factors on potential collapse are taken into consideration. From the results, the impact of various factors on the extent of detaching is seen intuitively.

해류계 계류에 의한 해류관측: 천해계류 (Moored Current Observation: Shallow-Water Mooring)

  • 황상철;장경일;석문식;장영석
    • 한국해양학회지:바다
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    • 제7권4호
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    • pp.286-303
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    • 2002
  • 한국해양연구원에서는 1978년이래 해류계 계류에 의한 해류관측을 실시하였다. 본 단보에서는 한국주변의 연안역과 대륙붕해역에서 시도하였던 계류 형태와 계류 실패 사례를 소개하고자 한다. 천해역에서는 U-type 계류와 트롤방지 해저 계류장치를 이용한 해류관측 방법이 주로 이용되었다. 천해역에서 계류 실패를 피하기 위해서는 (1) 어로활동을 포함한 계류현장의 환경을 고려하여 적절한 계류 계획을 세워야 하며 (2) 계류기간과 수심 및 기타 예기치 않게 계류선에 영향을 줄 수 있는 제반 요인 등을 고려하여 적절한 계류용품이 사용되어야 한다

천심도 절리 암반 중에 굴착된 지하 냉장저장 공동의 안정성 해석 (Stablility Analysis of Underground Cold Storage Openings in Shallow Jointed Rocks)

  • 김호영;박연준;한공창;박의섭;선경건
    • 터널과지하공간
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    • 제7권1호
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    • pp.58-64
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    • 1997
  • A pilot plant of underground cold storage for food has been excavated as a R&D program. For the stability assessment of underground cold storage opeinengs in shallow jointed rocks, three kinds of stability problems were analyzed by numerical methods. For the analysis of unstability by rock block movements, DEM was used considering the statistical distribution of rock joints. Concerning thermally induced cracking, FDM was used with thermomechanical stress analysis. Finally, in order to evaluate the joint failure during the thawing process, BE algorithm was applied. Numerical examples applied for the pilot plant show that the possibility of unstable failure of opeings exists but can be avoided with proper rock reinforcements provided.

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Estimation of ultimate bearing capacity of shallow foundations resting on cohesionless soils using a new hybrid M5'-GP model

  • Khorrami, Rouhollah;Derakhshani, Ali
    • Geomechanics and Engineering
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    • 제19권2호
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    • pp.127-139
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    • 2019
  • Available methods to determine the ultimate bearing capacity of shallow foundations may not be accurate enough owing to the complicated failure mechanism and diversity of the underlying soils. Accordingly, applying new methods of artificial intelligence can improve the prediction of the ultimate bearing capacity. The M5' model tree and the genetic programming are two robust artificial intelligence methods used for prediction purposes. The model tree is able to categorize the data and present linear models while genetic programming can give nonlinear models. In this study, a combination of these methods, called the M5'-GP approach, is employed to predict the ultimate bearing capacity of the shallow foundations, so that the advantages of both methods are exploited, simultaneously. Factors governing the bearing capacity of the shallow foundations, including width of the foundation (B), embedment depth of the foundation (D), length of the foundation (L), effective unit weight of the soil (${\gamma}$) and internal friction angle of the soil (${\varphi}$) are considered for modeling. To develop the new model, experimental data of large and small-scale tests were collected from the literature. Evaluation of the new model by statistical indices reveals its better performance in contrast to both traditional and recent approaches. Moreover, sensitivity analysis of the proposed model indicates the significance of various predictors. Additionally, it is inferred that the new model compares favorably with different models presented by various researchers based on a comprehensive ranking system.

Seismic behavior of reinforced concrete interior beam-column joints with beams of different depths

  • Xing, G.H.;Wu, T.;Niu, D.T.;Liu, X.
    • Earthquakes and Structures
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    • 제4권4호
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    • pp.429-449
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    • 2013
  • Current Design Codes for Reinforced Concrete (RC) interior beam-column joints are based on limited experimental studies on the seismic behavior of eccentric joints. To supplement existing information, an experimental study was conducted that focused on the effect of eccentricity of the deeper beams with respect to the shallow beams. A total of eight one-third scale interior joints with beams of different depths were subjected to reverse cyclic loading. The primary variables in the test specimens were the amount of joint transverse reinforcement and the cross section of the shallow beams. The overall performance of each test assembly was found to be unsatisfactory in terms of joint shear strength, stiffness, energy dissipation and shear deformation. The results indicated that the vertical eccentricity of spandrel beams in this type of joint led to lower capacity in joint shear strength and severe damage of concrete in the joint core. Increasing the joint shear reinforcement was not effective to alter the failure mode from joint shear failure to beam yielding which is favorable for earthquake resistance design, whereas it was effective to reduce the crack width at the small loading stages. Based on the observed behavior, the shear stress of the joint core was suggested to be kept as low as possible for a safe and practical design of this type of joint.

수치해석을 통한 기초지반의 파괴거동 고찰 (Study on Behavior of Failure of Footing through Numerical Analysis)

  • 이승현;장인성
    • 한국산학기술학회논문지
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    • 제16권3호
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    • pp.2212-2218
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    • 2015
  • 세 종류의 얕은기초를 지지하는 기초지반의 하중지지거동을 살펴보고자 모래지반과 점토지반을 가정하여 유한요소 해석을 수행하였다. 띠기초를 지지하는 모래지반의 파괴영역의 형상 및 크기는 상대밀도에 따라 달랐으나 점토지반의 경우 강도에 따라 파괴영역에 차이가 거의 없으며 이론에서 고려되는 파괴영역과 유사한 결과를 보였다. 모래지반에 대한 수치해석을 통해 얻은 하중-침하곡선의 형상을 고려해 볼 때 느슨한 모래에 놓인 기초의 경우 거의 관입전단파괴양상을 보였으며 조밀한 모래에 놓인 기초의 경우 극한하중이 뚜렷하지는 않았다. 점토지반에 놓인 기초에 대하여 수치해석을 통해 얻은 하중-침하량곡선의 경우 침하가 급격하게 증가하는 항복점이 존재함을 알 수 있었다. 모래지반에 의해 지지되는 기초에 대해 이론식에 의해 예측된 극한하중은 수치해석에 의한 극한하중보다 큰 값을 보였으며 점토지반에 대해 이론식에 의해 예측된 극한하중은 수치해석에 의한 극한하중과 유사한 값을 보였다. 1 인치 침하기준법에 의해 결정된 극한하중은 수치해석을 통해 얻은 극한하중보다 약간 작은 값을 보여 안전측의 결과를 보였다.