• 제목/요약/키워드: Tunnel expansion

검색결과 135건 처리시간 0.03초

암석의 온도의존성을 고려한 열-수리-역학적 상호작용의 수치해석적 연구 (Numerical Study on Thermo-Hydro-Mechanical Coupling in Rock with Variable Properties by Temperature)

  • 안형준;이희근
    • 터널과지하공간
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    • 제7권1호
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    • pp.13-19
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    • 1997
  • It is necessary to study on thermo-hydro-mechanical effect at rock mass performing project such as radiowaste disposal in deep rock mass. In this study, thermo-hydro-mechanical coupling analysis which is considered interaction and the variation of rock properties induced by temperature increase was performed for the circular shaft when appling temperature of 20$0^{\circ}C$ at the shaft wall. The shaft is diameter of 2 m and under hydrostatic stress of 5 MPa. In the cases, thermal expansion by temperature increase progress from the wall to outward and thermal expansion could induce tensile stress over the tensile strength of rock mass at the wall. When rock properties were given as a function of temperature, thermal expansion increased, tensile stress zone expanded. Lately, water flow is activated by increase of permeability and decrease of viscosity.

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유로내에서 응축을 수반하는 초음속 유동의 미소진폭 파형벽에 의한 Prandtl-Meyer 팽창 (Prandtl-Meyer Expansion Through a Small Wavy Wall of Supersonic Flow with Condensation in a Channel)

  • 권순범;안형준;선우은
    • 대한기계학회논문집
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    • 제18권6호
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    • pp.1582-1589
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    • 1994
  • The characteristics Prandt1-Meyer expansion of supersonic flow with condensation through a wavy wall in a channel are investigated by experiment and numerical direct marching method of characteristics. In the present study, for the case of moist air flow in the type of indraft supersonic wind tunnel, the dependency of location of formation and reflection of the oblique shock wave generated by the wavy wall and the distribution of flow properties, on the specific humidity and temperature at the entrance of wavy wall and the attack angle of the wavy wall to the main stream is clarified by schlieren photograph, distribution of static pressure and Mach number, and plots of numerical results. Also, we confirm that the wavy wall plays an important key role in the formation of oblique shock wave, and that the effect of condensation on the flow field appears apparently.

누수보수용 주입형 실링재의 시공 기준에 관한 실험적 연구 (An Experimental study on the Construction Standard for Sealer of Injection Type for Leakage Maintenance)

  • 임민찬;조일규;선윤숙;오상근
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2005년도 추계 학술논문 발표대회
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    • pp.51-54
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    • 2005
  • The concrete structure hasn't perfect waterproofing performance but if it doesn't have a joint part that could isolate a permeability. Concrete structure(communication tunnel and underground structure) has an expansion joint and construction joint. There are a lot of joint type after construction or expansion, shrinkage, vibration, over load, performance of decline etc.. they offer a water of way by variety change. In this reason, It carries in effect a waterproofing work for the concrete structure of waterproofing. but the structure has a behavior that cause a problem by waterproofing layer of damage, heaving phenomenon, temperature of shrinkage. In this study, we will estimate a field of application for Sealer of injection type for leakage maintenance of construction standard on the waterproofing performance.

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Characterization of the brittleness of hard rock at different temperatures using uniaxial compression tests

  • Chen, Guoqing;Li, Tianbin;Wang, Wei;Guo, Fan;Yin, Hongyu
    • Geomechanics and Engineering
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    • 제13권1호
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    • pp.63-77
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    • 2017
  • The failure mechanism of a deep hard rock tunnel under high geostress and high geothermalactivity is extremely complex. Uniaxial compression tests of granite at different temperatures were conducted. The complete stress-strain curves, mechanical parameters and macroscopic failure types of the rock were analyzed in detail. The brittleness index, which represents the possibility of a severe brittleness hazard, is proposed in this paperby comparing the peak stress and the expansion stress. The results show that the temperature range from 20 to $60^{\circ}C$ is able to aggravate the brittle failure of hard rock based on the brittleness index. The closure of internal micro cracks by thermal stress can improve the strength of hard rock and the storage capacity of elastic strain energy. The failure mode ofthe samples changes from shear failure to tensile failure as the temperature increases. In conclusion, the brittle failure mechanism of hard rock under the action of thermal coupling is revealed, and the analysis result offers significant guidance for deep buried tunnels at high temperatures and under high geostress.

가속 열 노화시험을 이용한 침매터널용 고무 씰 소재의 사용수명 예측 (Service life prediction of rubber seal materials for immersion tunnel by accelerated thermal degradation tests)

  • 박준형;박광화;박형근;권영일;김종호;성일경
    • 한국신뢰성학회지:신뢰성응용연구
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    • 제9권4호
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    • pp.275-290
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    • 2009
  • This paper considers accelerated thermal degradation tests which are performed for rubber seal materials used for undersea tunnels constructed by immersion method. Three types of rubber seals are tested; rubber expansion seal, omega seal, and shock absorber hose. Main ingredient of rubber expansion seal is EPDM(Ethylene Propylene Diene Monomer) and that of both omega seal and shock absorber hose is SBR(Styrene Butadiene Rubber). The accelerated stress is temperature and an Arrhenius model is introduced to describe the relationship between the lifetime and the stress. From the accelerated degradation tests, dominant failure mode of the rubber seals is found to be the loss of elongation. The lifetime distribution and the service life of the rubber seals at use condition are estimated from the test results. The acceleration factor for three types of rubber seals are also investigated.

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호남고속철도 터널 단면선정을 위한 미기압파 특성 분석에 관한 연구 (A study on the characteristics of Micro Pressure wave for the optimum cross-section design in Honam high speed railway)

  • 김선홍;문연오;석진호;김기림;김찬동;유호식
    • 한국암반공학회:학술대회논문집
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    • 한국암반공학회 2008년도 춘계학술발표회 논문집
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    • pp.51-68
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    • 2008
  • 고속열차의 터널 진입시 발생하는 압력파는 압축파의 형태로 터널내부를 전파하여 터널출구에 도달할 때에는 펄스형태의 충격성 압출파로 방사된다. 터널에서 방사된 압축파는 특정한 방향으로 전파되는 것이 아니라 전방향으로 확산되며, 압축파의 크기가 크면 주변 환경에 대한 환경소음 및 진동문제를 야기하게 되는데, 이를 미기압파(Micro Pressure wave)라 한다. 이러한 미기압파는 열차의 주행속도, 터널연장, 터널 및 열차의 단면적 등에 의존하므로 고속철도 터널의 적정단면을 결정하기 위하여 반드시 고려해야 된다. 이에, 본 논문에서는 호남고속철도 단면결정사례를 통하여 단면규모별 수치해석결과에 의한 미기압 기준 만족여부 및 최적단면선정과정을 소개하였다. 호남고속철도의 단면결정사례에서는 경부고속철도 화신 5 터널에서 터널내 압력 및 터널 출구에서의 미기압을 실측하여, 수치시뮬레이션의 입력조건으로 사용된 각종 매개변수 등의 적정성을 비교 검증하였으며, 모형실험을 통하여 합리적인 미기압과 저감대책을 제시하였다.

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Study on the Off-design Performance on a Plug Nozzle with Variable Throat Area

  • Azuma, Nobuyuki;Tanatsugu, Nobuhiro;Sato, Tetsuya;Kobayashi, Hiroaki;Hongo, Motoyuki
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2004년도 제22회 춘계학술대회논문집
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    • pp.644-648
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    • 2004
  • In the present study were examined numerically and experimentally the off-design performance characteristics on an axisymmetric plug nozzle with variable throat area. In this nozzle concept, its throat area can be changed by translating the plug into the axial direction. First, a mixed-expansion plug nozzle, in which two expansion parts are arranged both inside and outside, was designed by means of the method of characteristics. Second, the CFD analysis was verified by the cold-flow wind tunnel test. Third, its performance characteristics were evaluated over a wide range of pressure ratio from half to double throat area through the design point, using the CFD code verified by the wind tunnel tests. It was made clear from the study that not so critical thrust efficiency losses were found and the maximum thrust efficiency loss was at most approximately 5 % under off-design conditions without external flow. This result shows that a plug nozzle can give the altitude compensation even under off-design geometry operations. However, shock waves were observed in the inner expansion part under the doubled throat area operation and thus some thermal problems may be caused on the plug surface. Furthermore, collapse of cell structure on the plug surface was observed with external flow (around Mach number 2.0) as it became lower pressure ratio below the design point and the fact may result in big efficiency loss regardless of geometrical configuration.

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터널 갱구부 저토피 및 관통부 변경에 따른 안정성 검토 사례 연구 (A Case Study of Tunnel Stability due to the Shallow Shaft and Change Penetrating Location)

  • 이사익;최영철;정우용;김국한;김동인
    • 터널과지하공간
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    • 제23권2호
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    • pp.87-98
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    • 2013
  • 국토의 70%가 산지인 우리나라는 도로건설 등에 필요한 토지가 매우 부족할 뿐만 아니라 환경에 대한 국민들의 관심이 고조되어 터널 시공이 증가하는 추세이다. 남해고속도로 냉정~부산간 확장공사 대동1터널 시공 시 계곡부 위치 및 갱문 이격으로 저토피가 발생하였고, 민원 등으로 착공이 지연되어 관통부 변경이 불가피하였다. 이에 다중TSP를 적용하여 관통부 위치를 변경하였고 안정해석을 실시하였다. 해석결과 터널의 안정성에 문제가 없는 것으로 나타났으며, 시공 중 추가적인 안정성을 확보하고자 계측기 설치 및 기계굴착, 저토피 구간 추가 보강, 반단면 굴착을 실시하였다.

현장 데이터 분석을 통한 Gripper TBM의 Downtime 요소 분석 (Analysis on Downtime element of Gripper TBM based on field data)

  • 박진수;송기일
    • 한국터널지하공간학회 논문집
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    • 제23권6호
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    • pp.393-402
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    • 2021
  • 국내에 첫 도입된 TBM은 Gripper TBM으로 1985년 구덕 수로터널에 적용되었다. Gripper TBM 도입 초기단계에는 주로 수로터널 중심으로 적용 실적이 많았다(Tunnel Mechanized Construction Design, 2008). 현재 국내에서의 Gripper TBM의 시공범위는 수로터널은 물론이고 지하철, 철도터널, TBM+NATM 확공에 이르기까지 매우 다양하게 적용되고 있다. 해외에서는 Gripper TBM의 적용은 일반적이며, NATM터널 적용 시에도 Gripper TBM의 우수한 굴진율 때문에 탐사터널로 적용하고 완공 후에는 피난터널로 사용한다. 빠른 굴착속도로 인하여 풍화암 이상의 암반구간에서 Gripper TBM의 적용은 장대터널이나 산악터널 계획 시 다수의 작업구를 만들어 발생하는 환경이나 민원문제를 최소화 할 수 있다. 본 연구에서는 국내에서 가장 많이 적용되었던 직경 2.6~5.0 m의 Gripper TBM의 월굴진율과 시공싸이클을 분석하여 일반적인 Gripper TBM의 작업과정을 분석하고 월굴진율 300 m/month 이하로 굴진율을 기록했던 프로젝트의 Downtime을 조사·분석하였다.

Recommendations on dynamic pressure sensor placement for transonic wind tunnel tests

  • Yang, Michael Y.;Palodichuk, Michael T.
    • Advances in aircraft and spacecraft science
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    • 제6권6호
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    • pp.497-513
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    • 2019
  • A wind tunnel test was conducted that measured surface fluctuating pressures aft of a ramp at transonic speeds. Dynamic pressure test data was used to perform a study to determine best locations for streamwise sensor pairs for shocked and unshocked runs based on minimizing the error in root-mean-square acceleration response of the panel. For unshocked conditions, the upstream sensor is best placed at least 6.5 ramp heights downstream of the ramp, and the downstream sensor should be within 2 ramp heights from the upstream sensor. For shocked conditions, the upstream sensor should be between 1 and 7 ramp heights downstream of the shock, with the downstream sensor 2 to 3 ramp heights of the upstream sensor. The shock was found to prevent the passage coherent flow structures; therefore, it may be desired to use the shock to define the boundary of subzones for the purpose of loads definition. These recommendations should be generally applicable to a range of expansion corner geometries in transonic flow provided similar flow structures exist. The recommendations for shocked runs is more limited, relying on data from a single dataset with the shock located near the forward end of the region of interest.