• 제목/요약/키워드: horizontal stresses

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접착식 콘크리트 덧씌우기 포장의 부착거동 연구 (A Study on the Bond-Behavior of Bonded Concrete Overlays)

  • 김영규;이승우;한승환
    • 한국도로학회논문집
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    • 제14권5호
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    • pp.31-45
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    • 2012
  • PURPOSES: In Korea, rapid maintenance of distressed concrete pavement is required to prevent traffic jam of the highway. Asphalt concrete overlay has been used as a general maintenance method of construction for aged concrete pavement. AC overlay on existing concrete pavements experience various early distresses such as reflection crack, pothole and rutting, due to different physical characteristics between asphalt overlay and existing concrete pavement. Bonded concrete overlay(BCO) is a good alternative since it has advantages that can reduce various distresses during the service life since overlay material has similar properties with existing concrete pavements. Recently, BCO which uses the ultra rapid harding cement has been applied for maintenance of highway. BCO has advantage of structural performance since it does monolithic behave with existing pavement. Therefore, it is important to have a suitable bond strength criteria for securing performance of BCO. Bond strength criteria should be larger than normal tensile stress and horizontal shear stress occurred by traffic and environmental loading at bond interface. Normal tensile stress and horizontal shear stress need to estimated for the establishment of practical bond strength criteria. METHODS: This study aimed to estimate the bond stresses at the interface of BCO using the three dimensional finite element analysis. RESULTS: As a result of this study, major failure mode and maximum bond stress are evaluated through the analysis of normal tensile stress and horizontal shear stress for various traffic and environmental load conditions. CONCLUSIONS: It was known that normal tensile stresses are dominated by environmental loading, and, horizontal shear stresses are dominated by traffic loading. In addition, bond failure occurred by both of normal tensile stresses and horizontal shear stresses; however, normal tensile stresses are predominated over horizontal shear stresses.

응력이 공내 변형률에 미치는 영향 (The Effect of Stress on Borehole Deformability)

  • 윤건신
    • 한국지반공학회지:지반
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    • 제14권5호
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    • pp.219-234
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    • 1998
  • 초기수평 응력상태를 모사하여 응력이 변형계수에 미치는 영향을 검토 하기 위하여 암석 시료에 대하여 공내재하 변형 실내시험을 했다. 실험은 수평 응력의 크기, 응력비, 측정지점을 변화 시켜서 변형계수를 측정하였다. 측정결과 응력의 크기가 증가함에 따라 변형계수가 증가하며 최대 최소응력비가 커짐에 따라 변형계수는 최소응력 방향에서는 증가하고, 최대응력 방향에서는 감소하는 경향을 보였다. 이는 측정 위치에서 접선음력의 크기 변화에 따른 것으로 초기응력의 크기, 방향 및 내압의 크기에 따라 응력이 압축, 인장 또는 압축-인장상태로 바뀌기 때문이다. 따라서 변형 계수 측정시 이들의 영향을 분석한 후 결과치를 해석하여야 한다. 이와 같은 해석은 공내재하 변형 측정 결과 뿐만 아니라 내압이 있는 가스 저장 또는 압축터널 설계 및 터널 계측 결과 해석에도 적용 되어야 한다.

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An analytical solution for estimating the stresses in vertical backfilled stopes based on a circular arc distribution

  • Jaouhar, El-Mustapha;Li, Li;Aubertin, Michel
    • Geomechanics and Engineering
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    • 제15권3호
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    • pp.889-898
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    • 2018
  • Backfilling of mine stopes with waste rocks or tailings is commonly done to enhance ground stability. It is also an alternative for mining wastes disposal. A successful application of underground backfilling requires an accurate evaluation of the stress distribution in stopes. Over the years, various analytical solutions have been proposed to assess these stresses. Most of them were based on the arching theory, considering uniform stresses across horizontal layer elements. The vertical and horizontal stresses in vertical stopes are principal stresses only along the vertical center line, but not close to the walls where there is rotation of the principal stresses. A few solutions use arc layer elements that follow the iso-contours of the minor principal stresses, based on numerical solutions. In this paper, a modified analytical solution is developed for the stresses in vertical backfilled stopes, considering a circular arc distribution. The proposed solution is calibrated with a few numerical modeling results and then validated by additional numerical simulations under different conditions.

Experimental and numerical study on the earth pressure coefficient in a vertical backfilled opening

  • Jian Zheng;Li Li
    • Geomechanics and Engineering
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    • 제36권3호
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    • pp.217-229
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    • 2024
  • Determining lateral earth pressure coefficient (EPC) K is a classic problem in geotechnical engineering. It is a key parameter for estimating the stresses in backfilled openings. For backfilled openings with rigid and immobile walls, some suggested using the Jaky's at-rest earth pressure coefficient K0 while other suggested taking the Rankine's active earth pressure coefficient Ka. A single value was proposed for the entire backfilled opening. To better understand the distributions of stresses and K in a backfilled opening, a series of laboratory tests have been conducted. The horizontal and vertical normal stresses at the center and near the wall of the opening were measured. The values of K at the center and near the wall were then calculated with the measured horizontal and vertical normal stresses. The results show that the values of K are close to Ka at the center and close to K0 near the wall. Furthermore, the experimental results show that the horizontal stress is almost the same at the center and near the wall, indicating a uniform distribution from the center to the wall. It can be estimated by analytical solutions using either Ka or K0. The vertical stress is higher near the center than near the wall. Its analytical estimation can only be done by using Ka at the center and K0 near the wall. Finally, the test results were used to calibrate a numerical model of FLAC2D, which was then used to analyze the influence of column size on the stresses and K in the backfilled opening.

지대치 형태에 따른 Post core의 치근내부 및 지지조직의 응력분석 (STRESS ANALYSIS OF ROOT AND SUPPORTING TISSUES BY VARIOUS POST CORE DESIGN)

  • 김진;방몽숙
    • 대한치과보철학회지
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    • 제31권4호
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    • pp.468-481
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    • 1993
  • The Purpose of this study was to analyze the stresses and displacements of various post and core. The Finite element models of central incisors were divided into seven types according to the various amount of remaining tooth structures. $10kgf/mm^2$ force was applied respectively as follows : 1) Horizontal on the labial surface 2) $26^{\circ}$ diagonal direction on the lingual surface. Material property, geometry, and load condition of each model were inputted to the two dimensional ANSYS 4.4A finite element program : stresses and displacements were analyzed. Results were follows : 1. In the case of $130^{\circ}$ shoulder post and core, Maximum tensile and shear stresses were observed in the crown margin. 2. Maximum shear stress was about 29% reduced by contrabevel. 3. In the case of 1mm axial tooth structure, Maximum tensile stress observed in the dentin. 4. In the case of but joint of cervix, Maximum stress concentration was observed in the dentin by the inclined and horizontal force. 5. Horizontal force produced the extraordinary high stresses in dentin and supporting structures. 6. The amount of remaining tooth structure affected the level of stress significantly and it determined the location of stress concentration.

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연속철근콘크리트 도로포장 구조물의 내부 수평균열 (Horizontal Cracks in Continuously Reinforced Concrete Pavement Structures)

  • 김성민;조병휘;권순민
    • 콘크리트학회논문집
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    • 제18권3호
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    • pp.425-429
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    • 2006
  • 한국도로공사가 운영하고 있는 시험도로의 연속철근콘크리트 포장(CRCP) 구간에서 콘크리트 슬래브의 중간 깊이에서 수평방향으로 균열이 발생한 것을 발견하였다. 이러한 수평균열이 콘크리트 슬래브 내부에 어느 정도 존재하며 얼마나 진전되어 있는지를 조사하기 위하여 필요한 위치에서 코어를 채취하여 분석하였다. 또한 수평균열의 원인을 파악하기 위하여 수치해석을 수행하였다. 설계, 재료, 환경과 관련된 여러 가지 변수에 대하여 연구하여 수평균열을 야기할 수 있는 가능한 원인을 분석하였다. 수치해석모형은 유한요소법을 이용하여 개발하였으며 연속철근콘크리트 포장의 콘크리트 슬래브의 전단 및 수직 응력의 분포를 분석하였다. 수치해석 결과 최대 전단 및 수직인장 응력은 횡방향 균열의 위치에서 철근이 배근되어 있는 깊이에서 가장 크게 나타나는 것을 알 수 있었다. 이러한 최대 응력이 콘크리트의 강도에 다다르면 이러한 위치에서 수평균열이 발생하게 된다. 수평균열을 발생시키는 콘크리트의 최대응력은 환경하중, 콘크리트 열팽창계수, 콘크리트 탄성계수 등이 증가할수록 커지는 것을 알 수 있었다.

프리캐스트 프리스트레스트 콘크리트 포장의 긴장에 의한 거동 해석 (Behavior of Precast Prestressed Concrete Pavements under Post-Tensioning)

  • 김성민;조병휘
    • 한국도로학회논문집
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    • 제9권3호
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    • pp.135-143
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    • 2007
  • 공장에서 제작한 콘크리트 슬래브를 나열한 후 프리스트레싱 기법을 도입하여 일체화시켜 건설하는 프리캐스트 프리스트레스트 콘크리트 포장의 강선 긴장에 의한 압축력 재하 시 포장체의 거동을 유한요소해석 모델을 개발하여 분석하였다. 먼저 정착구의 개수가 긴장 시 포장체의 압축응력 분포에 미치는 영향을 분석하여 적절한 정착구의 개수를 선정하였다. 그리고 하부층의 수평저항, 포장체의 길이, 슬래브의 두께, 정착단의 전단면적 등의 변수가 포장체의 압축응력 분포에 어떠한 영향을 미치는지에 대하여 분석하였다. 하부층의 수평저항은 압축응력의 손실을 가져오며 이러한 손실은 포장체의 중앙부로 갈수록 증가하게 된다. 또한 포장체의 길이가 길어질수록 하부층 수평저항에 의한 압축응력의 감소가 커지게 된다. 슬래브의 두께는 얇아질수록 하부층 수평저항에 의한 압축응력의 손실이 커지게 된다 하지만 압축력을 가하는 면적인 정착단의 전단면적은 압축응력의 분포에 크게 영향을 미치지는 않는다.

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유한 요소법을 이용한 수종 심미 수복물의 응력 분석 (STRESS ANALYSIS OF VARIOUS ESTHETIC RESTORATIONS BY FINITE ELEMENT METHOD)

  • 조진희;방몽숙
    • 대한치과보철학회지
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    • 제29권2호
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    • pp.129-145
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    • 1991
  • The purpose of this study was to analyze the stresses and displacements of various esthetic restorations and abutment teeth. The finite element models of central incisor were divided into four groups according to the types of restoration. Three load cases were applied; 1) 45 degrees on the incisal edge, 2) horizontal force on the labial surface, and 3) 26 degrees diagonally on the lingual surface. Material property, geometry, and load conditions of each model were inputed to the two dimensional finite element program and stresses and displacements were analyzed. Results were as follows; 1. In the cases of porcelain fused gold ann and porcelain laminate venner, stresses were equally distributed in supporting abutment tooth. 2. The metal coping of porcelain fused gold u and collarless porcelain fused gold crown functioned as a good stress distributor. 3. When the horizontal load applied, the highest tensile and compressive stresses were seen in the cervical margin of restoration and the dentin of the abutment tooth. 4. The highest displacement of restoration was seen when load was applied at an mee of 26 degrees diagonally in lingual surface of tooth in centric occlusion. 5. The influence of loading direction on the stresses and displacements in the restoration was greater than that of various design. 6. The possibility of fracture was highest in porcelain jacket crown.

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좁게 굴착된 뒤채움 지반의 경계조건에 따른 수평응력 변화에 관한 연구 (Horizontal Earth Pressure of the Backfill in the Narrowly Excavated Ground Considering Various Boundary Conditions)

  • 김희수;반호기;문창열
    • 한국지반환경공학회 논문집
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    • 제18권11호
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    • pp.19-26
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    • 2017
  • 도심지에서 굴착 시 흔히 볼 수 있는 좁게 굴착된 경우 뒤채움이 되는 공간의 벽면은 대칭뿐 아니라 비대칭의 형태가 발생한다. 이러한 경우 뒤채움으로 인해 발생하는 수평응력은 벽면의 비대칭성 및 벽면의 마찰각에 따라 달라진다. 따라서 본 연구에서는 다양한 경계조건(저부폭, 벽면마찰, 뒤채움 지반의 상대밀도, 벽면경사)에 따른 깊이별 수평응력을 토조를 이용한 실내모형 실험을 통해 살펴보았다. 전체적으로 벽면이 매끄러울수록 경사가 수평에서 적을수록 수직응력의 증가로 인해 수평응력이 증가하였다.

A new geomechanical approach to investigate the role of in-situ stresses and pore pressure on hydraulic fracture pressure profile in vertical and horizontal oil wells

  • Saberhosseini, Seyed Erfan;Keshavarzi, Reza;Ahangari, Kaveh
    • Geomechanics and Engineering
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    • 제7권3호
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    • pp.233-246
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    • 2014
  • Estimation of fracture initiation pressure is one of the most difficult technical challenges in hydraulic fracturing treatment of vertical or horizontal oil wells. In this study, the influence of in-situ stresses and pore pressure values on fracture initiation pressure and its profile in vertical and horizontal oil wells in a normal stress regime have been investigated. Cohesive elements with traction-separation law (XFEM-based cohesive law) are used for simulating the fracturing process in a fluid-solid coupling finite element model. The maximum nominal stress criterion is selected for initiation of damage in the cohesive elements. The stress intensity factors are verified for both XFEM-based cohesive law and analytical solution to show the validation of the cohesive law in fracture modeling where the compared results are in a very good agreement with less than 1% error. The results showed that, generally by increasing the difference between the maximum and minimum horizontal stress, the fracture pressure and its profile has been strongly changed in the vertical wells. Also, it's been clearly observed that in a horizontal well drilled in the direction of minimum horizontal stress, the values of fracture pressure have been significantly affected by the difference between overburden pressure and maximum horizontal stress. Additionally, increasing pore pressure from under-pressure regime to over-pressure state has made a considerable fall on fracture pressure in both vertical and horizontal oil wells.