• 제목/요약/키워드: Reinforced Earth

검색결과 349건 처리시간 0.026초

국내 보강토옹벽 신기술 조사 연구 (Investigation on Recently Developed Reinforced Soil Wall System)

  • 이광우;조삼덕
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2008년도 추계 학술발표회
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    • pp.158-167
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    • 2008
  • Reinforced earth wall system has been popularized since its introduction to Korean civil engineering society in early 1980's. Nowadays, the increased use of reinforced earth wall for the purpose of obtaining more land brings several additional demands such as environmental-friendly, better stable and constructible, and economical system. This paper introduces some recently developed reinforced earth wall systems with consideration of the current demands.

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보강토 공법 (Reinforced Earth Structures)

  • 이은수
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2001년도 가을 학술발표회 논문집
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    • pp.301-313
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    • 2001
  • Reinforced earth is a composite construction material in which the strength of engineering fill is enhanced by the addition of strong tensile reinforcement in variable types. The basic mechanism of reinforced earth involves the generation of frictional forces and bearing resistances between the soil and the reinforcement. The primitive structure of reinforced earth in Korean peninsula were found as the earth wall built around the old fort In about 3rd century Modern reinforced earth was introduced to Korea early 1980, and spreaded tremendously through the nation. Among them, not a few reinforced earth walls which were built ignored over all stabilities have been collapsed. In this paper basic concepts, economic benefits, design considerations and future applicable trends of reinforced earth are reviewed in simple manners.

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차량충돌에 대한 보강토 옹벽 안전성 확보를 위한 가드레일 설치거리 (Establishment of Guardrail Distance for Safety of Reinforced Earth Retaining Wall by Vehide Collision)

  • 박권;홍기남;안광국
    • 한국안전학회지
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    • 제24권5호
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    • pp.57-62
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    • 2009
  • In this study, the numerical analyses regarding the distance between the guardrail and the reinforced earth wall as parameter were performed to determine the safe distance of guardrail installed on reinforced earth wall from the reinforced earth wall. The analyses were fulfilled by increasing the distance between the guardrail and reinforced earth wall from 150mm to 750mm. The computer program used in this research is LS-DYNA, which is very' popular in analysis of vehicle collision. Ford single unit truck in NCAC was employed as the model of vehicle and the velocity of vehicle collision was 80km/hr. As a results of analyses, the safety of guardrail was secured regardless of the distance between the guardrail and block of reinforced earth wall. However, to secure the safety of block of reinforced earth wall the distance between the guardrail and block of reinforced earth wall should be over 600mm.

분리형 보강토옹벽의 현장계측 및 분석 (Instrumented Field Performance of an Isolated-Reinforced Earth Wall)

  • 김영윤;한경제;김경모
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2000년도 가을 학술발표회 논문집
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    • pp.117-124
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    • 2000
  • As the reinforced earth wall is constructed with step by step backfill compaction method, the accumulative horizontal deformation is inevitable. It has been reported that about 80% of horizontal deformation is occurred during the construction stage of reinforced earth retaining wall. To reduce the horizontal deformation, an isolated-reinforced earth wall method(KOESWall system) was newly developed. In this system, the reinforced earth is constructed first with reinforcements and backfills only, and then facing blocks are installed after the horizontal displacement of reinforced earth is fully occurred. To evaluate the effect of a construction method and the performance of KOESWall system, two cases of full scale field performance was monitored during and after the construction stages.

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보강재 침하를 허용하는 연결시스템을 적용한 보강토옹벽의 거동 (Behavior of Reinforced Earth Retaining Wall for Connector System Driving the Settlement of Reinforcement)

  • 오종근;정종기;이송
    • 기술발표회
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    • 통권2006호
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    • pp.156-161
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    • 2006
  • Recently, construction of soil-reinforced segmental retaining walls which used geosynthetics are being increased day by day due to its construction efficiency, economic efficiency, and its aesthetic view. The conventional reinforced earth retaining wall has the connector system to fix the reinforcement and block However, this system may cause the crack of block and the rupture of reinforcement due to the stress concentration near the face of reinforced earth retaining wall In this study, the new connector system, which is able to allow the settlement of reinforcement, was applied to analyze the effect of connector system of reinforced earth retaining wall The connection strength tests and centrifugal tests for both the conventional reinforced earth retaining wall and the settlement reinforced earth retaining wall were performed to compare the results

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대형 Pull-out Test에 의한 보강토 지반의 변형특성에 관한 연구 (A STUDY ON THE DEFORMATION OF REINFORCED EARTH USING LARGE SCALE PULL-OUT TEST)

  • 이은수;이승호
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 1993년도 가을 학술발표회 논문집
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    • pp.29-32
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    • 1993
  • Presengly reinforced earth is widely utilized for earth structure increasingly not only domestic but also in many foreign countries because of its rapidity of construction and economic merits. The study on the reinforced earth has been actively carried out and enlarged in the theoretical aspect. But it has many problems to the application of the field. In this study large scale Pull-out Test was used to analyze reinforced earthe behavior considering deformation character of reinforced earth under the similar condition to the field.

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차량 충돌에 의한 보강토 옹벽의 안정성 평가 (Evaluation of Stability in reinforced Earth Retaining Wall by Vehicle Collision)

  • 안광국;허열;홍기남;안민수
    • 한국지반환경공학회 논문집
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    • 제11권6호
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    • pp.39-46
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    • 2010
  • 기존의 보강토 옹벽의 연구는 보강토 옹벽의 내적 외적파괴에 중점이 되어 연구가 이루어져 왔고 외부 충격에 관한 연구는 지진에 관한 것이 전부인 것이 현실이다. 도로의 발달로 인해서 도로 주변의 보강토 옹벽에 차량의 충돌 같은 외부 충격을 받는 경우가 늘어나고 있다. 그래서 본 연구에서는 신뢰도를 인정받고 있는 범용 유한요소 프로그램인 LS-DYNA를 사용하여 도로 주변 보강토 옹벽을 모델링하였고, NCAC에서 제공하는 8톤 중량의 Ford single unit truck을 이용하여 차량속도에 따른 보강토 옹벽의 거동 양상을 분석하였다. 그리고 향후 도로 주변에 시공되어지는 보강토 옹벽의 충돌에 관한 안정성을 확보하기 위해서 하단에 중력식 옹벽을 적용하였고 또한 높이를(0.5m, 1.0m, 1.5m) 변화시켜가면서 수치해석을 수행하여 보강토 옹벽의 거동을 분석하고 보강토 옹벽의 안정성을 확인 하였다.

Power Law 기반의 크리프 모델을 이용한 보강토 구조물의 크리프 모델링 (Creep Modelling of Reinforced Earth using Power Law-based Creep Models)

  • 김재왕;김선빈;유충식
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2009년도 춘계 학술발표회
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    • pp.164-178
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    • 2009
  • The importance of long-term performance of reinforced earth structures has been gaining its attention as the use of reinforced earth structures as load supporting structures is increasing. When using reinforced earth structures as loading supporting structures the stability as well as serviceability requirements must be met. In that respect the time-dependent long term deformation characteristics should be well understood. In this study the applicability of power law-based creep models for modeling of creep deformation of the components of reinforced earth structures are examined.

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토목섬유 보강토옹벽의 기술현황 및 개발동향 (Current State and Technical Development of Geosynthetics-Reinforced Earth Wall)

  • 조삼덕;이광우
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2008년도 추계 학술발표회
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    • pp.141-157
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    • 2008
  • Since 1984, block-type reinforced earth wall with geogrid reinforcement has been widely used for retaining wall applications till now in Korea. The use of geogrid as a reinforcement in the reinforced earth wall is steadily increased in an amount over $6,500,000m^2$ in a year. However, still need exists that some problems in design and construction practices should be made to review. Therefore, this paper reviewed current state and development items of geosynthetics-reinforced earth wall technology on design and construction point of view.

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토목섬유를 이용한 보강토옹벽의 개발 (A Study on the Development of Reinforced Earth wall by Geotextile)

  • 도덕현;유능환
    • 한국농공학회지
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    • 제28권2호
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    • pp.63-73
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    • 1986
  • The model was developed by applying the principles of Bacot and Vidal to measure the behavior of deformation of the reinforced earth wall, and various tasts were performed by using the plastic fabric filter and the galvanized steel plate as a strip. The results obtained are as follows; 1. When the reinforced earth wall is deformed by the load, the strip is completely reinforced by the backfill materials and changed to the rigid block state, under the state of failure which permits sliding only, the next theoretical equation is formed. (H/L) . tan$\theta$ [cosO-sinOtanO] =2sinO[tan($\theta$ +0) +tanO] 2.The degree of the mutual reinforcement of the backfill material and the strip depend on the physical characteristics of the each material especially the angle of shearing resistance of the backfill material is desirable over 20$^{\circ}$ and, if it is over 400, its function could be a maximum. 3.The distribution of the maximum tensile strain of the reinforcement is changing with the height of reinforced earth wall, and when the height from bottom of the reinforced earth wall is 1.85 to 3. 35m, the maximum tensile strain appears at 2m from the skin element. The maximum tensile strain is increased by the depth of the reinforced earth wall from surface, and increased with the lapse of time after construction. 4.The failure surface of the reinforced earth wall by the concrete skin was about 60$^{\circ}$and the failure behavior of the reinforced earth wall in which the fabric filter was buried was slow, and so the pore pressure could be decreased. 5.It is possible to construct the fabric retained earth wall by the plastic fabric filter only. And the reinforcing effect between the steel plate and the plastic fabric filter is not largely different. however, in the aspect of the economic durability, the plastic fabric filter is more advantageous. 6.The reinforcing action mainly depends on the width and the length of the reinforcing materials, if possible, the full width is advantageous to enlarge the contact area with backfill. but considering the economic aspect, it is neccessary to develop the method controlling the space of the strip.

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