• 제목/요약/키워드: shotcrete lining

검색결과 106건 처리시간 0.021초

Permanent Support for Tunnels using NMT

  • Barton, Nick
    • 한국암반공학회:학술대회논문집
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    • 한국암반공학회 1995년도 정기총회 및 학술발표회
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    • pp.1-26
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    • 1995
  • Key aspects of the Norwegian Method of Tunnelling (NMT) are reviewed. These include a predictive method of support design using the six-parameter Q-system of rock mass characterisation. The rock mass rating or Q-value is updated during tunnel driving. The designed tunnel support generally consists of wet process, steel fibre reinforced shotcrete combined with fully grouted, untensioned rock bolts, Even in poor rock conditions S(fr) + B usually acts as the final rock reinforcement and tunnel lining. Since it is a drained lining, it is very economic compared to cast concrete with membranes. Light, free-standing steel liners are used to prevent water affecting the runnel environment. Rock mass conditions, and hence lining design and cost estimation can be assessed by careful use of seismic surveys. Relationships between the P-wave velocity, the rock mass deformation modulus and the Q-value have recently been established, where tunnel depth, rock porosity and the uniaxial compression strength of the rock are important variables. The rock mass modulus estimate, and simple index testing of the joints, provide the key input which joints are discretely represented (either in two dimensions with the UDEC code or in three dimensions with the 3DEC code) is generally favoured compared to continuum analysis. The latter may give a misleading impression of uniformity and deformations tend to be understimated. Q-system NMT designs of S(fr) + B (fibre reinforced shotcrete and bolting) are numerically checked and adjustments made to bolt capacities and shotcrete thickness if overloading is evident around the modelled profile.

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터널시공과 지하수의 상호작용이 터널의 거동에 미치는 영향 (Effect of Tunneling and Groundwater Interaction on Tunnel Behavior)

  • 유충식;김선빈;배규진;신휴성
    • 한국터널지하공간학회 논문집
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    • 제7권2호
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    • pp.97-108
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    • 2005
  • 본 논문에서는 터널굴착과 지히수의 상호작용이 터널의 거동에 미치는 영향에 대한 내용을 다루었다. 이를 위해 먼저 터널 굴착으로 인해 지하수유동이 발생하는 구간에서의 설계주안점을 고찰하였으며 서울지역의 지하철 건설시 접하는 일반적인 지반조건에 시공되는 가상의 터널조건에 대해 응력-간극수압 연계해석을 이용한 매개변수 연구를 수행하였다. 매개변수 연구 결과를 토대로 지하수 유동에 따른 막장거통 및 지표변위 특성을 고찰하였으며 터널-지히수 상호작용 관점에서 지반/라이닝 투수성에 따른 솟크리트 라이닝 응력 발생 경향을 고찰하였다. 검토결과 터널-지히수 상호작용은 지표침하량 및 변위를 증가시키며 솟크리트 라이닝 축력을 증가시키는 것으로 나타났다. 아울러 솟크리트 축력은 지반과 솟크리트 라이닝의 상대적 투수성에 좌우되는 것으로 나타났다. 본 연구결과를 종합하여 설계시 고려하여야 할 주안점을 제시하였다.

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싱글쉘 터널 라이닝의 파괴 메카니즘 및 지보성능에 관한 연구 (A Study on failure mechanism and load-bearing capacity of single-shell tunnel lining)

  • 신휴성;김동규;장수호;배규진
    • 한국터널지하공간학회 논문집
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    • 제8권3호
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    • pp.273-287
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    • 2006
  • 본 연구에서는 숏크리트 라이닝과 2차 콘크리트 라이닝 사이에 방수막으로 분리된 기존 이중구조의 터널 라이닝과 터널 라이닝 단면상에 전단력 전달을 저해하는 장치를 포함하지 않은 일체화 싱글쉘 구조의 터널 라이닝의 파괴양상 및 하중 지지성능에 관해 고찰한다. 하중지지력 평가를 위하여 우선적으로 수치해석적인 사전 평가가 실시되었으며, 새롭게 고안된 실대형 터널 라이닝 하중재하 실험이 실시되었다. 이때, 이완하중이나 암괴하중을 모사하기 위해 터널 천단부 집중하중이 고려되었다. 본 연구를 통하여, 동일한 터널라이닝 강도 관리기준에서 이중구조 라이닝보다 싱글쉘 라이닝 구조가 약 20%정도 높은 지지력을 보였으며, 다중 숏크리트 타설 단계마다 고성능 첨가재료 투입량의 조절로 복합재료 싱글쉘 라이닝 구조를 형성함으로써 보다 적은 고성능화 첨가재료 투입량으로 유사한 지지성능을 확보할 수 있는 가능성을 보였다.

소구경 터널에 사용되는 SHOT PATCH용 모르타르의 특성 (Properties of the SHOT PATCH Mortar a Wet System for Small Bore Tunnels)

  • 정민철;전용희;정종익;박길수
    • 콘크리트학회논문집
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    • 제11권6호
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    • pp.121-128
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    • 1999
  • The SHO PATCH System Mortar is a mortar shotcreting system which uses fairly small machine and equipment, and is applied for shotcrete tunnel linings, in particular for small bore tunnels of aqueducts by the TBM(Tunnel Boring Machine) method, and for reparing tunnels suffering from spring water and deterioration. This study shows the characteristics of the new mortar shotcreting system, the SHOT PATCh System Mortar, which exhibits excellent shotcrete performance.

Design of the secondary tunnel lining using a ground-primary support-secondary lining interaction model

  • Chang, Seok-Bue;Seo, Seong-Ho;Lee, Sang-Duk
    • 한국지구물리탐사학회:학술대회논문집
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    • 한국지구물리탐사학회 2003년도 Proceedings of the international symposium on the fusion technology
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    • pp.109-114
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    • 2003
  • It is the common practice to reinforce excessively the secondary tunnel lining due to the lack of rational insights into the ground loosening loads. The main load of the secondary lining for drained-type tunnels is the ground loosening. The main cause of the load for secondary tunnel lining is the deterioration of the primary support members such as shotcrete, steel ribs, and rockbolts. Accordingly, the development of the analysis model to consider the ground-primary supports-secondary lining interaction is very important for the rational design of the secondary tunnel lining. In this paper, the interaction is conceptually described by the simple mass-spring model and the load transfer from the primary supports to the ground and the secondary lining is showed by the characteristic curves including the secondary lining reaction curve for the theoretical solution of a circular tunnel. And also, the application of this model to numerical analysis is verified in order to review the potential tool for practical tunnel problems with the complex conditions like non-circular shaped tunnels, multi-layered ground, sequential excavation and so on.

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터널 숏크리트 라이닝의 장기 내구성 저하 평가를 위한 수치모델의 개발 (Development of a Numerical Model for Evaluation of Long-Term Mechanical Degradation of Shotcrete Lining in Tunnels)

  • 신휴성;임종진;김동규;이규필;배규진
    • 한국터널공학회:학술대회논문집
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    • 한국터널공학회 2005년도 학술발표회 논문집
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    • pp.251-258
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    • 2005
  • In this study, a new concept for simulating a long-term mechanical degradation mechanism of shotcrete in tunnels has been proposed. In fact, it is known that the degradation takes place mainly by internal cracks and reduced stiffness, which results mainly from volume expansion of shotcrete and corrosion of cement materials, respectively. This degradation mechanism of shotcrete in tunnels appears similar to those of the most kinds of chemical reactions in tunnels. Therefore, the mechanical degradation induced by a kinds of chemical reaction was generalized and mathematically formulated in the framework of thermodynamics. The numerical model was implemented to a 3D finite element code, which can be used to simulate behaviour of shotcrete structures undergoing external forces as well as chemical degradation in time. A number of illustrative examples were given to show the feasibility of the model in tunnel designs with consideration of long-term degradation effect of shotcrete quantitatively for increase of long-term safety of tunnels.

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모형 실험에 의한 터널 복공의 역학적 거동 및 균열 특성에 관한 연구 (Mechanical Behavior and Cracking Characteristics of Tunnel Lining by Model Experiment)

  • 이대혁;김영근;이희근
    • 터널과지하공간
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    • 제8권1호
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    • pp.53-66
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    • 1998
  • Considering the mechanical cracking in the concrete lining of tunnels occurring in relatively short period of time after the construction, there is a need for the study on the mechanical behavior and the cracking characteristics of double lining support system(shotcrete and concrete lining). For the proposed study, downscaled lining models of Kyung-Bu High Speed Railway tunnels were tested. Most longitudinal cracks at about 93 percentage developed within 30 arch degree from the vault. Cracking load was about 30 percentage of the failure load and the deflection under the cracking load was 10 percentage of the deflection under the failure load. The overbreak around the vault contributed to the reduction of the capacity for cracking and failure by the percentage greater than the reduced effective depth. Of several rock block types considered in this research, the triangular block was the most critical, and the right triangular block under eccentric load was secondly critical for the stability of the tunnel lining system. The dimensionless support reaction curves were derived from the experimental results for single and double lining. The general equation to compute the designed flexural moment was modified.

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복합섬유보강 콘크리트 라이닝 부재의 균열제어를 위한 수치해석적 연구 (Numerical Analysis on the Crack Control of Concrete Lining Reinforced by Composite Fibers)

  • 양우식
    • 한국지반신소재학회논문집
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    • 제9권2호
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    • pp.41-50
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    • 2010
  • 터널 구조물은 다른 사회간접시설과 마찬가지로 시공과정에서부터 사용연한까지 지속적으로 안전성이 확보되어야 한다. 특히, NATM 공법으로 시공되는 터널 콘크리트 라이닝은 터널의 외장재로 취급되어 왔지만, 근년에 와서 노후화된 터널의 콘크리트 라이닝에서 발생하는 심각한 구조적 균열에 대한 문제가 야기되면서 터널의 장기적인 안전성을 유지하는 최종 지보수단인 구조재로 고려되고 있다. 콘크리트 라이닝 천단부의 종방향 균열 발생은 콘크리트 시공방법과 같은 연관관계를 가지고 있다. 콘크리트 라이닝 타설시 강재 거푸집의 천단부 부터 콘크리트를 주입함으로 콘크리트가 측벽 쪽으로 유동하면서 충전되어 천단부 라이닝 콘크리트는 마지막으로 콘크리트가 타설되기 때문에 천단부의 상부에 공동이 발생할 우려가 크며, 이로 인해 콘크리트 라이닝의 두께도 부족하게 되는 경우가 발생한다. 본 연구에서는 터널 콘크리트 라이닝에서 여러 요인으로 발생하는 균열을 보다 효율적으로 제어하기 위하여 콘크리트 라이닝에서 발생하는 균열 특성, 기존 강섬유보강 콘크리트 라이닝과 복합섬유보강 콘크리트 라이닝의 수치해석적 접근을 시도하였다. 즉, 터널 라이닝 천단부에 강섬유와 복합섬유의 혼입률에 따른 콘크리트 라이닝 부재의 파괴하중과 변위에 대하여 분석하였다.

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현장 열응답 시험과 수치해석을 통한 터널에 적용된 에너지 텍스타일의 열적 거동 연구 (A study on thermal behavior of energy textile by performing in-situ thermal response test and numerical simulation)

  • 이철호;박문서;민선홍;정재형;최항석
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2010년도 추계 학술발표회
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    • pp.325-335
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    • 2010
  • A new geothermal energy source obtained from a tunnel structure has been studied in this paper. The geothermal energy is extracted through a textile-type ground heat exchanger named "Energy Textile" that is installed between a shotcrete layer and a guided drainage geotexitle. A test bed was constructed in an abandoned railway tunnel to verify the geothermal heat exchanger system performed by the energy textile. To evaluate the applicability of the energy textile, we measured the thermal conductivity of shotcrete and lining samples which were prepared in accordance with a common mixture design. An overall performance of the energy textile installed in the test bed was evaluated by carrying out a series of in-situ thermal response test. In addition, a 3-D finite volume analysis (FLUENT) was adopted to simulate the operation of the ground heat exchanger being encased in the energy textile with the consideration of the effect of the shotcrete and lining thermal conductivity.

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지반과 숏크리트 라이닝의 인터페이스 특성에 관한 실험적 연구 (Experiments on Interfacial Properties Between Ground and Shotcrete Lining)

  • 장수호;이석원;배규진;최순욱;박해균;김재권
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2004년도 춘계학술발표회
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    • pp.407-414
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    • 2004
  • Interfacial properties between rock mass and shotcrete play a significant role in the transmission of loads from the ground to shotcrete. These properties have a major effect on the behaviours of rock mass and shotcrete. They, however, have merely been assumed in most of numerical analyses, and little care has been taken in identifying them. This paper aimed to identify interfacial properties including cohesion, tension, friction angle, shear stiffness, and normal stiffness, through direct shear tests as well as interface normal compression tests for shotcrete/rock cores obtained from a tunnel sidewall. Mechanical properties such as compression strength and elastic modulus were also measured to compare them with the time-dependent variation of interfacial properties. Based on experiments, interfacial properties between rock and shotcrete showed a significant time-dependent variation similar to those of its mechanical properties. In addition, the time-dependent behaviours of interfacial properties can be well regressed through exponential and logarithmic functions of time.

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