• 제목/요약/키워드: Sheet-pile wall

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H-pile로 보강된 Sheet pile 흙막이 벽체의 적용을 위한 수치해석 (Numerical Study for Application of Sheet Pile Retaining Wall Reinforced with H-pile)

  • 조광준;전상현;서지원;유남재;박병수
    • 한국지반환경공학회 논문집
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    • 제16권7호
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    • pp.23-33
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    • 2015
  • 본 연구는 차수가 요구되는 현장에 Sheet Pile을 적용하려고 하나 풍화암 등의 지반조건으로 인해 항타관입성의 제한이 있을 때 H-Pile로 보강된 Sheet Pile 흙막이 벽체를 적용하기 위한 수치해석 연구이다. Sheet Pile을 H-Pile로 보강한 S/H 복합파일의 거동을 규명하기 위하여 Sheet Pile의 규격 2종류와 H-Pile 3종류의 부재조건 변화, Sheet Pile과 H-Pile의 설치 근입심도 변화, H-Pile의 설치간격, 굴착조건 등을 변화시킨 101개의 경우에 대해 광범위한 수치해석을 실시하였다. 수치해석 결과, Sheet Pile SP-IIIA와 H-Pile H250, Sheet Pile SP-IV와 H-Pile H350의 조합에서 두 부재가 동시에 허용응력에 도달하거나 같은 응력비를 갖는 것으로 나타나 이 기성제품 조합이 효율적임을 알 수 있었으며, S/H 복합파일의 강성이 증가할수록 벽체의 수평변위가 감소하였고 S/H 복합파일 중 Sheet Pile의 근입심도가 안정성에 미치는 영향은 작은 것으로 나타나 Sheet Pile은 지지층 내 관입이 가능한 위치까지만 설치하여도 차수 및 벽체강성 증가의 목적을 달성할 수 있을 것으로 분석되었다.

횡방향 재하 말뚝 주변의 널말뚝에 관한 변수연구 (A Parametric Study of Sheet Pile Wall Near the Laterally Loaded Pile)

  • 윤희정
    • 한국지반환경공학회 논문집
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    • 제13권8호
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    • pp.35-43
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    • 2012
  • 널말뚝을 해안지역이나 도심지역에 건설하는 경우 주변에 위치한 횡방향 재하 말뚝의 영향권 내에 존재하게 되는 경우가 발생하게 되지만, 기존 설계방법에서는 이러한 영향에 대하여 고려하고 있지 않다. 본 연구를 통해 말뚝에 횡방향 하중이 재하되는 경우 근접한 널말뚝에 미치는 영향을 정량적으로 예측할 수 있는 방법을 제안하고자 한다. 상용프로그램인 ABAQUS를 이용하여 3차원 유한요소 모델을 만들었으며 지반 구성모델로는 Drucker-Prager 모델, 널말뚝과 말뚝은 선형탄성으로 거동하도록 모사하였다. 널말뚝의 휨강성, 말뚝과 널말뚝 간의 거리, 굴착깊이, 그리고 지반의 탄성계수 등 총 4가지 변수들을 사용하여 횡방향 재하 말뚝이 주변 널말뚝에 미치는 영향을 분석해 보았다. 수치해석 결과를 이용하여 널말뚝에 발생하는 최대 횡방향 변위 및 휨모멘트를 측정할 수 있는 간단한 식을 제시하였다.

A parametric investigation on effect of supporting arrangements on earth retention system

  • Ali Murtaza Rasool;Fawad S. Niazi;Tauqir Ahmed;Mubashir Aziz
    • Geomechanics and Engineering
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    • 제33권5호
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    • pp.507-518
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    • 2023
  • The effects of various supporting arrangements have been investigated on an excavation support system using a numerical tool. The purpose of providing different supporting arrangements was to limit the pile wall deflection in the range of 0.5% to 1% of the excavation depth. Firstly, a deep excavation supported by sheet pile wall was modeled and the effects of sheet pile wall thickness, excavation depth and distance to adjacent footings from sheet pile wall face were explored on the soil deformation and wall deflection. Further analysis was performed considering six different arrangements of tieback anchors and struts in order to limit the wall deflections. Case-01 represents the basic excavation geometry supported by sheet pile wall only. In Case-02, sheet pile wall was supported by struts. Case-03 is a sheet pile wall supported by tieback anchors. Likewise, for the Cases 04, 05 and 06, different arrangements of struts and tieback anchors were used. Finally, the effects of different supporting arrangements on soil deformation, sheet pile wall deflection, bending moments and anchor forces have been presented.

Lateral earth pressure and bending moment on sheet pile walls due to uniform surcharge

  • Singh, Akshay Pratap;Chatterjee, Kaustav
    • Geomechanics and Engineering
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    • 제23권1호
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    • pp.71-83
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    • 2020
  • Cantilever sheet pile walls are subjected to surcharge loading located on the backfill soil and at different distances from the top of the wall. The response of cantilever sheet pile walls to surcharge loadings at varying distances under seismic conditions is scarce in literature. In the present study, the influence of uniform surcharge load on cantilever sheet pile wall at varying distances from the top of the wall under seismic conditions are analyzed using finite difference based computer program. The results of the numerical analysis are presented in non-dimensional form like variation of bending moment and horizontal earth pressure along the depth of the sheet pile walls. The numerical analysis has been conducted at different magnitudes of horizontal seismic acceleration coefficient and vertical seismic acceleration coefficients by varying the magnitude and position of uniform surcharge from the top of the wall for different embedded depths and types of soil. The parametric study is conducted with different embedded depth of sheet pile walls, magnitude of surcharge on the top of the wall and at a distance from the top of the wall for different angles of internal friction. It is observed that the maximum bending moment increases and more mobilization of earth pressure takes place with increase in horizontal seismic acceleration coefficients, magnitude of uniform surcharge, embedded depth and decrease in the distance of surcharge from the top of the wall in loose sand.

해안매립지반에서의 토류가시설 시험시공 및 변경사례 (A Field Case on the Pilot Constructions and Changes of a Braced Cut Wall in a Coastal Filled Land)

  • 황영철;김기림;김연정
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2006년도 추계 학술발표회
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    • pp.46-55
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    • 2006
  • There are many kinds of braced cut wall methods as the sheet pile, SCW, CIP and slurry wall which is adoptable for a deep excavation construction in a coastal filled land. The braced cut wall which has a strong stiffness is very stable but it has the weak point that the construction cost is high. Thus when a braced cut wall is designed, the geotechnical engineers choose the braced cut wall which has more safe and economic in the consideration of surrounding buildings near the construction site. Especially, when the sheet pile method as a braced cut wall is cheesed, the layer order and consistence of a coastal deposit stratum are considered and the pile driving method is also considered. This paper introduces the case that the originally box-type sheet pile wall was changed to U-type and high strength material after the pilot test at the subway construction site in a coastal filled land. This paper also introduces the case that the sheet pile's driving method was changed to special method in the section of the temporary coffer dam which had made when the present coastal filled land was formed.

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Numerical analysis of sheet pile wall structure considering soil-structure interaction

  • Jiang, Shouyan;Du, Chengbin;Sun, Liguo
    • Geomechanics and Engineering
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    • 제16권3호
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    • pp.309-320
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    • 2018
  • In this paper, a numerical study using finite element method with considering soil-structure interaction was conducted to investigate the stress and deformation behavior of a sheet pile wall structure. In numerical model, one of the nonlinear elastic material constitutive models, Duncan-Chang E-v model, is used for describing soil behavior. The hard contact constitutive model is used for simulating the behavior of interface between the sheet pile wall and soil. The construction process of excavation and backfill is simulated by the way of step loading. We also compare the present numerical method with the in-situ test results for verifying the numerical methods. The numerical analysis showed that the soil excavation in the lock chamber has a huge effect on the wall deflection and stress, pile deflection, and anchor force. With the increase of distance between anchored bars, the maximum wall deflection and anchor force increase, while the maximum wall stress decreases. At a low elevation of anchored bar, the maximum wall bending moment decreases, but the maximum wall deflection, pile deflection, and anchor force both increase. The construction procedure with first excavation and then backfill is quite favorable for decreasing pile deflection, wall deflection and stress, and anchor forces.

사질토 지반 앵커식 고정지지 널말뚝 설계용 간편식 (Simplified Formula for Design of Fixed Earth Supported Sheet-Pile Wall in Sand)

  • 양우식;김기웅
    • 한국농공학회지
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    • 제40권6호
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    • pp.89-94
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    • 1998
  • Stock(1992) had developed the graph for solving the penetration depth, tieforce of anchor and maximum bending moment of sheet-pile wall for cantilever and free earth supported anchored wall. Kim(1995) had developed graph for design of fixed earth supported anchored wall. In this paper, the simplified formulas for calculating the penetration depth, tieforce of anchor and maximum bending moment of sheet-pile wall was developed for fixed earth supported anchored wall in sand. The developed formulas may be helpful for design or sheet pile wall.

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연약지반상에 측방유동을 받는 교대말뚝기초의 거동분석 (The Analysis of Pile Bridge Abutments on Soft Clay for Loading from Lateral Soil Movement)

  • 이송;강대원
    • 한국철도학회논문집
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    • 제7권2호
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    • pp.149-154
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    • 2004
  • Pile Bridge Abutments constructed on a soft base are affected by a lateral flow. Laterl flow pressure acting on Pile is very difficult to calculate because of, interation of ground and Pile. So, it is different to estimate displacement of Pile Bridge Abutments. This paper studied about possibility of the displacement estimation of Pile Bridge Abutments by using the equivalent sheet pile wall theory that was Randolph proposed in 1981. Analysis program through using the SAGE CRISP that is FEM program. Analysis data used Centrifuge test results of Springman(1991), Bransby(1997) and Ellis(1997)'s paper. In conclusion, maxium displacement that is carried out by centrifuge test and numerical analysis has occured at the head of pile, as well as Maximum displacement of pile is closely similar. But the moment acting on pile of numerical analysis is under estimated compare to the centrifuge test. Through the comparative study, it is found that displacement estimation by equivalent sheet pile wall is in relatively good agreement with the results of centrifuge test.

An approach of seismic design for sheet pile retaining wall based on capacity spectrum method

  • Qu, Honglue;Li, Ruifeng;Hu, Huanguo;Jia, Hongyu;Zhang, Jianjing
    • Geomechanics and Engineering
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    • 제11권2호
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    • pp.309-323
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    • 2016
  • As the forefront of structural design method, capacity spectrum method can be applied conveniently, and through this method, deformation demand of structure can be considered. However, there is no research for the seismic application in the structure of sheet pile retaining wall to report. Therefore, focusing on laterally loaded stabilizing sheet pile wall, which belongs to flexible cantilever retaining structure and meets the applying requirement of capacity spectrum method from seismic design of building structure, this paper studied an approach of seismic design of sheet pile wall based on capacity spectrum method. In the procedure, the interaction between soil and structure was simplified, and through Pushover analysis, seismic fortification standard was well associated with performance of retaining structure. In addition, by comparing the result of nonlinear time history analysis, it suggests that this approach is applicable.

강널말뚝 교대의 응력 및 변형 해석 (Analysis of Stress and Strain for Steel Sheet Pile Bridge Abutment)

  • 정하익;유준;오인규;은성운;손인군;이성열;김형구
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2004년도 춘계학술발표회
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    • pp.561-564
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    • 2004
  • Steel sheet pile can be alternative material for bridge abutment for. The steel sheet pile bridge abutment is new and replacement bridge abutment due to its aesthetically attractive and cost effective. Use of embedded steel sheet piling brings savings in dead load, provides a compliant retaining wall, and permits speedier construction. In addition, for replacement bridge projects, traffic interruption can be minimized. It is hoped that this study will encourage designers and constructors to consider a steel substructure option more frequently during the conceptual and preliminary design phases of projects and thereby to take advantage of the potential to construction more efficiently. In this paper, an analysis of stress and strain for steel sheet pile bridge abutment was conducted. From the analysis results, the stress and strain characteristics of steel sheet pile bridge abutment with variations of steel sheet pile parameters is suggested.

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