• 제목/요약/키워드: Reinforcement of soil ground

검색결과 196건 처리시간 0.027초

Reinforcement effect of micropile and bearing characteristics of micropiled raft according to the cohesion of soil and stiffness of pile

  • KangIL Lee;MuYeun Kim;TaeHyun Hwang
    • Geomechanics and Engineering
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    • 제37권5호
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    • pp.511-525
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    • 2024
  • Micropiled raft has been used to support the existing and new structures or to provide the seismic reinforcement of foundation systems. Recently, research on micropile or micropiled raft has been actively conducted as the usage of micropile has increased, and the reinforcement effect of pile for the raft, the pile installation methods, and methods for calculating the bearing capacity of micropiled raft have been proposed. In addition, existing research results show that the behavior of this foundation system is different depending on the pile conditions and can be greatly influenced by the characteristics of the upper or lower ground depending on the conditions of pile. In other words, considering that the micropile is a friction pile, it can be predicted that the reinforcing effect of micropile for the raft and the bearing capacity of micropiled raft may depend on the cohesion of upper soil layer depending on the pile conditions. However, existing studies have limitations in that they were conducted without taking this into account. However, existing studies have limitations as they have been conducted without considering these characteristics. Accordingly, this study investigated the reinforcing effect of micropile and the bearing characteristics of micropiled raft by varying the cohesion of upper soil layer and the stiffness of pile which affect the behavior of micropiled raft. In this results, the reinforcing effect of micropile on the raft also increased as the cohesion of soil layer increased, but the reinforcing effect of pile was more effective in ground conditions with decreased the cohesion. In addition, the relationship between the axial stiffness of micropile and the bearing capacity of micropiled raft was found to be a logarithmic linear relationship. It was found that the reinforcing effect of micropile can increase the bearing capacity of raft by 1.33~ 3.72 times depending on the cohesion of soil layer and the rigidity of pile.

지오텍스타일 보강토벽의 계측결과에 의한 거동분석 (Behavior Analysis from the Site Monitoring Results of Geotextile Reinforced Wall)

  • 원명수;이재열;김유성
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 1999년도 봄 학술발표회 논문집
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    • pp.145-152
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    • 1999
  • In the applying of the reinforced soil method, it would be possible to obtain reinforcement effect more than before in terms of economic if high water content clayey soils could be used as embanking material. Futhermore it would be possible to expect the expansion of the applying field of reinforced soil method too. In this study, the authors describe the analysis results on the behavior of 5 meter high walls reinforced with nonwoven geotextile having the permeability and woven geotextile or geogrid having large tensile strength on the soil ground. The behavior of the walls were investigated for about 100 days after construction and the deformations of reinforcements, lateral soil pressures, vertical and horizontal displacements of the walls were examined by automatical measuring system. It was found that this kinds of reinforcing system might effectively improve the performance of the steep walls by virtue of the reciprocal action between soil and reinforcements, and it might be concluded that construction of the clayey reinforced soil walls with three kinds of geotextiles could be done successfully even on the comparative weak ground.

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섬유혼합토의 전단파괴 해석 (Anlaysis on the Shear Failure of Fiber Mixed Soil)

  • 박영곤;장병욱
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 1999년도 Proceedings of the 1999 Annual Conference The Korean Society of Agricutural Engineers
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    • pp.562-568
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    • 1999
  • The model using homogenization technique based on energy concept for the prediction of the failure criterion of staple fiber mixed soil was developed to increase the practice and the application of staple fiber as a reinforcement for improving soft ground and agrictural structures. Parameters of the model are aspect ration and volumetric ocntnet of fiber, cohesion and internal friction angle of soil, adhesiion intercept of soil and fiber. It is judged that the model developed in this study is applicable to the soil composed of clay, silt and sand mixed by linear types of fiber such as steel bar, steel fiber , natural fiber etc..

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섬유혼합토의 전단파괴 해석 (Analysis on the Shear Failure of Fiber Mixed Soil)

  • 박영곤
    • 한국농공학회지
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    • 제42권2호
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    • pp.86-92
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    • 2000
  • The model using homogenization technique based on energy concept for the prediction of the failure criterion of staple fiber mixed soil was developed to increase the practice and the application of staple fiber as a reinforcement for improving soft ground. Parameters of the model are aspect ratio and volumetric content of fiber, cohesion and internal friction angle of soil, adhesion intercept and interface friction angle of soil and fiber. It is considered that the model developed in this study is applicable to the soil composed of clay, silt and sand mixed by thread types of fiber such as steel bar, steel fiber, natural fiber etc.

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표층처리공법으로 개량된 초연약지반의 침하거동에 미치는 영향인자 분석 (Evaluation of Influencing Factors on Settlement Behavior of Very Soft Ground with Reinforced Surface)

  • 유승경;이종선;함태규;양기석;조삼덕;최항석
    • 한국지반공학회논문집
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    • 제24권12호
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    • pp.85-92
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    • 2008
  • 현재 국내외에는 준설매립지반과 같은 초연약지 반에 적용하고 있는 표층처리공법에 대한 명확한 설계법이 미흡하며 따라서 경험적인 설계가 주를 이루고 있는 실정이다. 본 논문에서는 표층처리공법의 합리적 설계법 확립의 일환으로 표층 보강된 초연약지반의 거동을 수치해석적 방법을 통해 살펴보았다. 이를 위해 수치해석에서는 초연약지반 및 보강재, 복토재 등의 거동을 모사할 수 있는 적절한 구성모델을 설정하고 기존의 실내모형실험에 의한 결과와의 비교, 분석을 통하여 이 재료들의 적정한 물성치를 설정하였으며 그에 대한 타당성을 검토하였다. 또한 일련의 수치해석 결과들로부터 초연약지반의 강도 및 표층보강재의 강성, 복토의 두께에 따른 초연약지반의 침하거동 특성을 분석하였다.

교반혼합체로 보강된 흙막이 벽체의 거동 분석 (Analysis of Behaviour of Earth Retaining Structure using Cement-mixing Method)

  • 김영석;조용상;강인철;김인섭
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2009년도 세계 도시지반공학 심포지엄
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    • pp.1294-1300
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    • 2009
  • Recently, excavations in highly congest urban area have been increased. For the excavations conducted in extremely narrow spaces, we have been developing a novel soil reinforcement system of temporary retaining walls by using deep cement mixing method. The developing method installs largerdiameter ($\Phi$=300~500mm) and shorter reinforcement blocks than previous reinforcement system for mobilizing friction with soils, therefore it has advantages of not only shortening the length of reinforcement system but also reducing the amount of reinforcement. In this study, we performed a numerical analysis of the new reinforcement system by using a commercial finite element program, and evaluated the behavior of the reinforced retaining wall system under various conditions of the length, the diameter, the spacing, and the angle of the reinforcement system.

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지오셀의 형상에 따른 수평투수계수 산정에 관한 실험적 연구 (Experimental Study for Determination of Horizontal Permeability with considering various Geocell Shapes)

  • 신은철;이운현;강현회;오영인
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2010년도 추계 학술발표회
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    • pp.285-292
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    • 2010
  • Recently, it is difficult to find a good soil ground due to the shortage of land for new construction site. Because of this situation, the geosynthetics are commonly used for reinforcing the substructure of the soil ground, and hence improving the bearing capacity and reducing the settlement. The geocell is one of geosynthetics and is the advanced system of geogrid. It is the way to increase earth strength and bearing capacity by using three dimension type of geocomposite. In this paper, the Horizontal permeability was determined with considering various geocell shapes. The permeability test was performed by following method of ASTM D4716(87) and potential filling material for geocell was used. The bearing capacity mechanism which enhances the soil ground with evenly maintaining the degree of the compaction was also analyzed for geocell reinforced ground.

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Design of geocell reinforcement for supporting embankments on soft ground

  • Latha, G. Madhavi
    • Geomechanics and Engineering
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    • 제3권2호
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    • pp.117-130
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    • 2011
  • The methods of design available for geocell-supported embankments are very few. Two of the earlier methods are considered in this paper and a third method is proposed and compared with them. In the first method called slip line method, plastic bearing failure of the soil was assumed and the additional resistance due to geocell layer is calculated using a non-symmetric slip line field in the soft foundation soil. In the second method based on slope stability analysis, general-purpose slope stability program was used to design the geocell mattress of required strength for embankment. In the third method proposed in this paper, geocell reinforcement is designed based on the plane strain finite element analysis of embankments. The geocell layer is modelled as an equivalent composite layer with modified strength and stiffness values. The strength and dimensions of geocell layer is estimated for the required bearing capacity or permissible deformations. These three design methods are compared through a design example. It is observed that the design method based on finite element simulations is most comprehensive because it addresses the issue of permissible deformations and also gives complete stress, deformation and strain behaviour of the embankment under given loading conditions.

산악터널 토사구간의 설계와 시공 (Design and Construction for Mountain-Tunnel Under the Soil Area)

  • 문두형;문훈기;강인섭;이재준
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2009년도 세계 도시지반공학 심포지엄
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    • pp.845-862
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    • 2009
  • Recently, Tunnel in soil has been designed frequently because Mountain Tunnel has been increased rapidly due to straight of horizontal curve and residents' complaints, tunnel portal has been planned at closed to surface for minimization of environmental damage. To excavate tunnel in soil, where displacement and crushing occur in tunnel face and crown because of unstable ground condition, appropriate reinforcement method needed. On this paper, through design and construction of the soil tunnel, consider application of reinforcement method, economical efficiency and stability.

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터널 굴착 중 바닥부 연약대로 인한 터널 융기 거동 사례 분석 (Upheaveal Behaviour of Tunnel Bottom in the Weatherd Fracture Zone under Tunnel Excavation)

  • 장용채;김낙영;진규동;손용민
    • 한국지반환경공학회 논문집
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    • 제15권6호
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    • pp.49-56
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    • 2014
  • 터널 구조물 안정성은 굴착하는 지반강도에 전적으로 좌우되는 특성이 있다. 지반강도가 약한 경우에는 터널 굴착 공사중 붕락이 자주 발생하게 된다. 일반적으로 이러한 조건에서는 분할굴착 또는 사전 보강을 실시하여 굴착 중 붕락에 대비하게 된다. 그럼에도 불구하고 연약대에서는 상반굴착 중 천단부 붕락이 발생할 수 있는데 이러한 사례는 많고 붕락 부위에 대해서 보강공법 적용을 통해 복구가 가능하다. 터널 바닥부에서 융기가 발생하는 경우에는 상부구간까지 악영향을 미치므로 터널 구조물 전체적인 안정성에 치명적인 영향을 줄 수 있다. 따라서 하부구간이 불량한 경우에는 반드시 심도 있는 보강검토가 필요하다. 터널 바닥부 융기로 인해 터널 안정성에 위해한 영향을 주는 사례가 최근에 터널 장대화와 관련되어 증가하고 있으므로 보강적용 기준에 대한 연구가 필요하고 본 연구에서는 실제 현장 하부구간 융기사례들을 조사하여 거동특성과 보강방안을 분석하였다.