• 제목/요약/키워드: Underground Structures

검색결과 972건 처리시간 0.027초

지하구조물(지하차도, 지하통로)건설 현황 및 관련 신기술 개발동향 연구 (A study on the state of the art on the construction and the new technology of the underground structure(underpass, underground passageways))

  • 김형태;한만엽;손은진;한녹희;정지만
    • 한국콘크리트학회:학술대회논문집
    • /
    • 한국콘크리트학회 2008년도 추계 학술발표회 제20권2호
    • /
    • pp.891-894
    • /
    • 2008
  • 최근 지하공간개발이 활발해지면서 이의 체계적인 활용에 대한 연구가 필요하게 되었다. 본고에서는 지하공간 중 지하차도 및 지하통로를 대상으로 하여 국내건설 및 유지관리현황, 지하차도 및 지하통로 설계기준, 설계 검토내용 및 시공절차, 대상 지하구조물의 주요하자 원인 및 보수보강 방법, 이와 관련한 국내 신기술 신공법 현황, 그리고 장래 계획 등에 대해 조사 연구하였다. 현재 64${\sim}$94%는 건설된 지 10년이 지난 상태이며 전체의 50%가 서울, 경기도 및 수도권 일대에 위치하고 있으며 특정 관리대상 시설로 분류하여 안전점검 및 관리가 시행되고 있다. 설계 시에는 차도부, 보도부, 차로폭등으로 구분하여 시설한계기준을 적용하고 있으며 건설공법은 지반상태, 구조물심도, 지형조건 등을 감안하여 개착식과 터널식을 구분 적용하고 있다. 구조물 공법 선정 시에는 설치공법, 내부 중간(벽, 기둥)구조, 보도설치여부,부력방지공 설치여부, 방수공법, 내장 마감재, 갱구부형식 등을 감안하여 정하고 있다. 주요 하자원인분석 시 구조적 원인과 비구조적 원인으로 분류하여 균열, 박리, 탈락 및 백태 등에 의한 하자원인 및 대책을 검토하였고 수화열에 의한 균열발생 기준도 추가하였다. 지하차도 및 지하통로 관련 신기술 신공법은 2007년 말까지 등록된 것을 주로 조사 분석하였다. 대부분 지하철이나 통신과로등 다른 지하구조물에 공통적으로 적용할 수 있는 것들로 관련 요소핵심기술을 활발히 개발 중인 것으로 파악되었다. 지하차도및 지하통로 관련 지하구조물의 장래계획은 지역마다 자치구마다 다르지만 시 전체에 지하도로 건설을목표로 지하구조물 계획을 수립하고 있는 서울시를 위주로 장래관련 계획을 자료조사하였다.

  • PDF

다층구조계내 터널 거동의 역해석 (A Back-Analysis of Tunnels in Multi-Layered Underground Structures)

  • 전병승;이상도;나경웅;김문겸
    • 터널과지하공간
    • /
    • 제4권1호
    • /
    • pp.17-23
    • /
    • 1994
  • This study consists of two procedures on back analysis and forward analysis which is a basic tool of the former. For a safe and economical construction of underground structures, it is required to identify the structural parameters and analyze the structural behavior as exactly as possible. In this paper, a boundary element method to analyze the behavior of multi-alyered underground structures is studied, in which body forces and initial stresses are considered. That is, each layer is discritized into subregions using infinite fundamental solutions, and terms of body forces and initial stresses are transformed into boundary integral where the applied direct integral method is used. And the system of equations containing body forces and initial stresses are considered. That is, each layer is discritized into subregions using infinite fundamental solutions, and terms of body forces and initial stresses are transformed into boundary integral where the applied direct integral method is used. And the system of equations containing body forces and initial stresses are composed, then the method to solve unknowns is used with applying compatibility and equilibrium conditions between interfaces. As well, the direct search method is applied in back analysis problems. By Powell's method as a technique to search unknown parameters, assuming displacements calculated from boundary element analysis as in-situ displacements, elastic moduli and initial stresses are presumed. As consequences of this study, the results of boundary element analysis of the behavior of multilayered structure considering body forces and initial stresses are agreed with those of finite element analysis. And results of back analysis of elastic moduli and initial stresses in each layers are agreed with exact values with a little difference. Therefore, it is known that this study can be efficiently applied for analyzing the behavior of underground structures including back analysis problems.

  • PDF

지하공간 건설시 탄.소성 모델에 의한 지반계수 추정 (A Geotechnical Parameter Estimation of Underground Structures in Elasto -plastic Condition)

  • 이인모;김동현;이우진
    • 한국지반공학회지:지반
    • /
    • 제13권4호
    • /
    • pp.85-94
    • /
    • 1997
  • 지하공간에 대한 설계 및 시공시에는 필연적으로 많온 불확정성이 내포되어 있다. 가장 중요 한 요소로는 설계단계 에서 입력 값으로 사용하는 지반계수이며, 이의 정 확한 산정 에는 많은 어려 움이 따른다. 특히, 지하공동의 굴착으로 인해 소성영역이 발생하게 되면, 지반거동은 항복규준 을 결정짓는 강도정수에 민감한 반응을 나타내므로 탄성해석법에만 근거한 역 해석기법의 적용 으로는 신뢰성 있는 지반계수를 추정할 수 없게 된다. 본 논문에서는 지하공간의 설계와 시공의 유기적인 결합으로 터널의 소성상태까지 고려할 수 있는 최적의 지반계수를 산정하기 위하여, 초기예측치와 계측치로부터 예측된 값을 합리적으로 조합할 수 있는 확장 Bayesian방법(Extended Bayesian Method:EBM)을 적용하였다. 지반 조합 거동 예측은 Mohr-Coulomb 항복규준에 근거한 탄.소성 유한요소해석법을 사용하였다. 개발된 피드백 시스템의 효용성을 검증하기 위하여 소성 거동을 나타내는 단면에 대해 예제해석을 수행하였다.

  • PDF

Seismic performance and optimal design of framed underground structures with lead-rubber bearings

  • Chen, Zhi-Yi;Zhao, Hu;Lou, Meng-Lin
    • Structural Engineering and Mechanics
    • /
    • 제58권2호
    • /
    • pp.259-276
    • /
    • 2016
  • Lead-rubber bearings (LRBs) have been used worldwide in seismic design of buildings and bridges owing to their stable mechanical properties and good isolation effect. We have investigated the effectiveness of LRBs in framed underground structures on controlling structural seismic responses. Nonlinear dynamic time history analyses were carried out on the well-documented Daikai Station, which collapsed during the 1995 Hyogoken-Nanbu earthquake. Influences of strength ratio (ratio of yield strength of LRBs to yield strength of central column) and shear modulus of rubber on structural seismic responses were studied. As a displacement-based passive energy dissipation device, LRBs reduce dynamic internal forces of framed underground structures and improve their seismic performance. An optimal range of strength ratios was proposed for the case presented. Within this range, LRBs can dissipate maximum input earthquake energy. The maximum shear and moment of the central column can achieve more than 50% reduction, whereas the maximum shear displacement of LRBs is acceptable.

지하구조물의 열화방지를 위한 수밀성 콘크리트의 개발 (Development of Low Permeable Concrete for the Control of Deterioration in Underground Structures)

  • 백상현;박성수;박종유;백원준;엄태선;최롱
    • 한국콘크리트학회:학술대회논문집
    • /
    • 한국콘크리트학회 1999년도 봄 학술발표회 논문집(I)
    • /
    • pp.191-196
    • /
    • 1999
  • In underground reinforced concrete structures, such as drainage structure, water and chloride ion penetrated into concrete through the cracks of concrete and its permeable property, cause the corrosion of reinforcing steel bar, which accelerates the expansive cracks and deterioration of concrete. It is necessary to control those deterioration of underground structure by improving its permeability and durability through the reasonable solutions in design, construction and materials. In the present study, fly ash concrete, which has good material properties in long-term period, is compared and studied with plain concrete using ordinary portland cement in terms of fundamental mechanical properties, permeability, drying shrinkage and durability. Also, the mix design and its properties of low permeable concrete using fly ash are reviewed. From this study, fly ash concrete can conctrol the penetration of water and chloride ion effectively by forming dense microstructure of concrete. Therefore, fly ash concrete may increase the long-term function, performance and serviceability of underground structures.

  • PDF

상시미동과 지하구조 (Microtremor and Underground Structure)

  • 김성균
    • 지질공학
    • /
    • 제1권1호
    • /
    • pp.109-120
    • /
    • 1991
  • 본고에서는 상시미동의 지질공학적 응용을 폭넓게 검토하는 한편 상시미동을 측정, 해석하여 상시미동의 탁월주기아 지하구조와의 관련성을 규명하였다. 상시미동의 응용예로서 확실히 구분이 가능한 지하구조를 가진 경상분지내 3지점에서 측정한 상시미동을 해석, 유추한 지하구조와 실제의 구조가 일치하는 사례를 소개하였다. 이와같은 상시미동의 장기간 측정 및 해석은 지하구조의 추정, 부지 고유의 응답 스펙트럼 작성, seismic microzonation 등에 경제적이고 효과적으로 이용할 수 있는 지질공학적 수단으로 사료된다.

  • PDF

국가 기간 시설물의 전식 대책(안) (A Mitigation Methode of DC Stray Current for Underground Metallic Structures in KOREA)

  • 배정효;하윤철;하태현;이현구;김대경
    • 대한전기학회:학술대회논문집
    • /
    • 대한전기학회 2007년도 제38회 하계학술대회
    • /
    • pp.1609-1611
    • /
    • 2007
  • The owner of underground metallic structures (gas pipeline, oil pipeline, water pipeline, etc) has a burden of responsibility for the corrosion protection in order to prevent big accidents like gas explosion, soil pollution, leakage and so on. So far, Cathodic Protection(CP) technology have been implemented for protection of underground systems. The stray current from DC subway system in Korea has affected the cathodic protection (CP) system of the buried pipelines adjacent to the railroads. In this aspect, KERI has developed a various mitigation method, drainage system through steel bar under the rail, a stray current gathering mesh system, insulation method between yard and main line, distributed ICCP(Impressed Current Cathodic System), High speed response rectifier, restrictive drainage system, Boding ICCP system. In this paper, the mechanism of mitigation method of DC stray current for underground metallic structures is described.

  • PDF

Experimental and numerical investigation of RC sandwich panels with helical springs under free air blast loads

  • Rashad, Mohamed;Wahab, Mostafa M.A.;Yang, T.Y.
    • Steel and Composite Structures
    • /
    • 제30권3호
    • /
    • pp.217-230
    • /
    • 2019
  • One of the most important design criteria in underground structure is to design lightweight protective layers to resist significant blast loads. Sandwich blast resistant panels are commonly used to protect underground structures. The front face of the sandwich panel is designed to resist the blast load and the core is designed to mitigate the blast energy from reaching the back panel. The design is to allow the sandwich panel to be repaired efficiently. Hence, the underground structure can be used under repeated blast loads. In this study, a novel sandwich panel, named RC panel - Helical springs- RC panel (RHR) sandwich panel, which consists of normal strength reinforced concrete (RC) panels at the front and the back and steel compression helical springs in the middle, is proposed. In this study, a detailed 3D nonlinear numerical analysis is proposed using the nonlinear finite element software, AUTODYN. The accuracy of the blast load and RHR Sandwich panel modelling are validated using available experimental results. The results show that the proposed finite element model can be used efficiently and effectively to simulate the nonlinear dynamic behaviour of the newly proposed RHR sandwich panels under different ranges of free air blast loads. Detailed parameter study is then conducted using the validated finite element model. The results show that the newly proposed RHR sandwich panel can be used as a reliable and effective lightweight protective layer for underground structures.