• 제목/요약/키워드: Excavation simulation

검색결과 160건 처리시간 0.027초

지하공동구조물의 설계시 적용되는 지반거동해석 (Analysis of Ground Behavior applied to the Design of Underground Opening Structures)

  • 박남서;이성민
    • 화약ㆍ발파
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    • 제15권1호
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    • pp.44-60
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    • 1997
  • 지하공동의 설계는 지반이 본래 가지고 있는 물리적 특성을 최대한 이용하는 것을 기본 개념으로 하므로 지반자체의 복잡다양한 역학적 특성들을 평가하여 설계에 반영하는 것은 지극히 어려운 일이며, 이러한 특성들을 일률적으로 평가하는 것도 거의 불가능하다. 컴퓨터의 발달과 수치해석 기술의 적용이 본격화 되기까지는 지반의 거동을 지배하는 몇가지 주요 요소의 정성적 혹은 정략적 특성에 의하여 지반을 몇가지 등급으로 분류하여 통계자료의 분석 및 경험적 판단에 의해 설계를 수행하여 왔다. 지하공동구조물 설계시의 지반거동해석은 이완영역의 가정에 의한 방법, 경험적 접근법에 의한 방법 및 최근에 와서 수치해석 기술의 발달에 따라 주로 사용되는 공학적 해석 방법에 의한 지반거동해석 등으로 구분하여 정리하였다.

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Partitioned analysis of nonlinear soil-structure interaction using iterative coupling

  • Jahromi, H. Zolghadr;Izzuddin, B.A.;Zdravkovic, L.
    • Interaction and multiscale mechanics
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    • 제1권1호
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    • pp.33-51
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    • 2008
  • This paper investigates the modelling of coupled soil-structure interaction problems by domain decomposition techniques. It is assumed that the soil-structure system is physically partitioned into soil and structure subdomains, which are independently modelled. Coupling of the separately modelled partitioned subdomains is undertaken with various algorithms based on the sequential iterative Dirichlet-Neumann sub-structuring method, which ensures compatibility and equilibrium at the interface boundaries of the subdomains. A number of mathematical and computational characteristics of the coupling algorithms, including the convergence conditions and choice of algorithmic parameters leading to enhanced convergence of the iterative method, are discussed. Based on the presented coupling algorithms a simulation environment, utilizing discipline-oriented solvers for nonlinear structural and geotechnical analysis, is developed which is used here to demonstrate the performance characteristics and benefits of various algorithms. Finally, the developed tool is used in a case study involving nonlinear soil-structure interaction analysis between a plane frame and soil subjected to ground excavation. This study highlights the relative performance of the various considered coupling algorithms in modelling real soil-structure interaction problems, in which nonlinearity arises in both the structure and the soil, and leads to important conclusions regarding their adequacy for such problems as well as the prospects for further enhancements.

연직차수벽에서 필터케익을 고려한 순간 변위시험 해석방법 (Slug Test Analysis in Vertical Cutoff Walls with Consideration of Filter Cake)

  • 웽테바오;이철호;최항석
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2008년도 춘계 학술발표회 초청강연 및 논문집
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    • pp.220-228
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    • 2008
  • In constructing a slurry trench cutoff wall, a thin but relatively impermeable layer called filter cake can be formed on the excavation surface. The filter cake significantly influences the result of slug test analysis in the cutoff wall. This study is to examine the effect of filter cake on evaluating in situ hydraulic conductivity of the vertical cutoff wall along with slug test analyses. The numerical program Slug_3D was modified to take filter cake into account in the slug test simulation. With consideration of filter cake, the type curve method and the modified line-fitting method were used to reanalyze the case study taken from a landfill site. The previous results achieved by Choi and Daniel (2006b) without consideration of filter cake have been compared with the results in this study. The considerable difference between the two results shows the necessity of considering the filter cake in practice.

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지하공간 건설에 따른 굴착전면의 파괴모드 (Heading Failure Modes during Underground Excavation)

  • 권오엽;조재완;신종호;최용기;신용석
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2005년도 춘계 학술발표회 논문집
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    • pp.409-416
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    • 2005
  • Design analysis for underground spaces requires evaluating stability related to tunnel collapses. A failure mode is one of the critical factors in the conventional methods of stability analysis. Therefore identification of failure modes is essential in securing safe construction in the phase of design analysis, instrumentation planning and implementation of reinforcing measures. In this study failure modes at the tunnel heading in granular soils are investigated using physical model tests and numerical simulation for various tunnel depths and ground surface inclinations. Test results indicated that the effect of depth and inclination of ground surface on a failure mode are significant. It is identified that, with an incase in depth, failure modes become localized in a region close to the tunnel. It is also known that an increase in the inclination of ground surface results in inclined and wide failure modes.

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Nonlinear simulation of tunnel linings with a simplified numerical modelling

  • Zhao, Huiling;Liu, Xian;Bao, Yihai;Yuan, Yong
    • Structural Engineering and Mechanics
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    • 제61권5호
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    • pp.593-603
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    • 2017
  • A high-efficiency simplified modelling approach is proposed for investigating the nonlinear responses of reinforced concrete linings of shield tunnels. Material and geometric nonlinearities are considered in the analysis of the lining structures undergoing large deformation before ultimately losing the load-carrying capacity. A beam-spring element model is developed to capture the force-transfer mechanism between lining segments and radial joints. The developed model is validated by comparing analyzed results to experimental results of a single-ring lining structure under two loading conditions: the ground overloading and the lateral unloading respectively. The results show that the lining structure under the lateral unloading due to excavation on the both sides of the tunnel is more vulnerable compared to the case of ground overloading on the top of the tunnel. A parameter study is conducted and results indicate that the lateral pressure coefficient has the greatest influence on the behaviour of the lining structure.

A study on the rock fracture mechanism of cutter penetration and the assessment system of TBM tunnelling procedure

  • Baek, Seung-Han;Moon, Hyun-Koo
    • 한국지구물리탐사학회:학술대회논문집
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    • 한국지구물리탐사학회 2003년도 Proceedings of the international symposium on the fusion technology
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    • pp.162-169
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    • 2003
  • Excavation by TBM can be characterized by a rock-machine interaction during the cutting process on a small scale, but on a large scale the interaction between the rock mass and TBM becomes very significant. For the planning and evaluation of TBM tunnelling it needs to understand rock fracture mechanism by a cutter or cutters on a small scale, and to estimate penetration rate, advance rate and utilization on a large scale. In this study rock chipping mechanism due to cutter-penetration is analysed by numerical simulation, showing that rock chipping is mainly occurred by tensile failure. Also, through the analysis of factors that affect on TBM procedures in various assessment systems, it is determined that the key elements that should be considered in the planning and evaluation of TBM tunnelling are classified into rock properties, the geological structures and properties of rock mass, and the structural and functional specifications of the machine. The user-friendly assessment tool is developed, so that penetration rate, advance rate and TBM utilization are evaluated from various input data. The tool developed in this study can be applied to a practical TBM tunnelling by understanding TBM tunnelling procedures.

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한국 전통 암각화 문양을 응용한 문화상품 디자인 개발에 관한 연구[ I ] -울산 반구대 암각화의 거북, 배, 사람얼굴 문양을 중심으로- (A Study on the Cultural Commodities' Design Development with Applying to the Korea Traditional Rock Art Pattern( I ) -With Turtle, Ship, Human's Face Patterns of Ulsan Ban Gu-Dae Rock Art as the Central Figure-)

  • 박순천
    • 복식
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    • 제56권6호
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    • pp.33-44
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    • 2006
  • With the basis of objective truth by the subjective sensibility and the Rock art's history and the molding the Rock arts image motive, the conclusion like this; The first, Rock art express the imagination variety as symbols of abundance, fecundity, stable lift's present mourning and absolute respect and the spirit. The second, the new motives are developed by making formative images with deeply understanding essential side in the Rock arts. With this, the pattern is repeated with making motive's repeat units and the new pattern is developed by 45-angle iteration. These cultural products were used to produce necktie, scarf, and clothing making commonly efficient use in actual life- with 3D simulation. Through developing Rock art pattern, it is great the possibility of development for expressing Korea images with making an excavation. A competitive design as to the international period can be developed with applying to the variety department-cultural products development.

해저열수광상 채광 로봇의 해저면 주행성능 시뮬레이션 (Driving Performance Simulation of Mining Robot for SMS deposits)

  • 이창호;김형우;홍섭;김성수
    • 한국해양공학회지
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    • 제27권2호
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    • pp.80-86
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    • 2013
  • KIOST developed a deep-sea mining robot called "MineRo" to collect manganese nodules in 2007. MineRo operates on flat ground. SMS (seafloor massive sulfide) deposits are shaped like undulating mountains. This paper deals with a numerical analysis model of a mining robot for SMS deposits. The mining robot consists of a tracked vehicle, chassis structure with a turntable, boom arm with 2 articulations, excavation tool, discharging unit, hydro-electric system, and sensing-and-monitoring system. In order to compare and analyze the dynamic responses of the driving mechanism, various tracked vehicles are modeled using commercial software. Straight driving simulations are conducted under undulating ground conditions. A conceptual design of a mining robot with four track systems for SMS deposits is modeled on the basis of these results.

Effect of Joint Spacing on the Earth Pressure Against the Support System in a Jointed Rock Mass

  • Son, Moorak;Adedokun, Solomon
    • 한국지반환경공학회 논문집
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    • 제17권1호
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    • pp.29-37
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    • 2016
  • This study examined the magnitude and distribution of earth pressure on the support system in a jointed rock mass due to the different joint spacing as well as varying the rock type and joint condition (joint shear strength and joint inclination angle). Based on a physical model test and its numerical simulation, a series of numerical parametric analyses were conducted using a discrete element method. The results showed that the magnitude and distribution of earth pressure were strongly affected by the different joint spacing as well as the rock type and joint condition. In addition, the study results were compared with Peck's earth pressure for soil ground, which indicated that the earth pressure in a jointed rock mass could be considerably different from that in soil ground. The study suggests that the joint spacing as well as the rock type and joint condition are important factors affecting the earth pressure in a jointed rock mass and they should be considered when designing a support system in a jointed rock mass.

지하공동구조물의 설계시 적용되는 지반거동해석 (Analysis of Ground Behavior applied to the Design of Underground Opening Structures)

  • 박남서;이성민
    • 지질공학
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    • 제1권1호
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    • pp.38-53
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    • 1991
  • 지하공동의 설계는 지반이 본래 가지고 있는 물리적 특성을 최대한 이용하는 것을 기본 개념으로 하므로 지반자체의 복잡다양한 역학적 특성들을 평가하여 설계에 반영하는 것은 지극히 어려운 일이며, 이러한 특성들을 일률적으로 평가하는 것도 거의 불가능하다. 컴퓨터의 발달과 수치해석 기술의 적용이 본격화 되기까지는 지반의 거동을 지배하는 몇가지 주요요소의 정성적 혹은 정량적 특성에 의하여 지반을 몇가지 등급으로 분류하여 통계자료의 분석 및 경험적 판단에 의해 설계를 수행하여 왔다. 지하공동구조물 설계시으 지반거동해석은 이완영역의 가정에 의한 방법, 경험적 접근법에 의한 방법 및 최근에 와서 수치해석 기술의 발달에 따라 주로 사용되는 공학적 해석 방법에 의한 지반거동해석 등으로 구분하여 정리하였다.

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