• 제목/요약/키워드: Passive pile

검색결과 29건 처리시간 0.031초

수평모래지반에서 측방변형을 받는 사각형 수동 열말뚝에 관한 실험적 연구 (A Study of Rectangular-shaped Passive Row Piles in Horizontal Sand-ground under Lateral Soil Movement by Model Test)

  • 배종순;권민재
    • 한국지반공학회논문집
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    • 제24권4호
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    • pp.23-36
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    • 2008
  • 본 연구는 측방변형을 일으키는 수평모래지반에 매설된 사각형 수동열말뚝의 모형실험에 대한 것이다. 말뚝의 형상, 열말뚝의 위치, 말뚝의 간격과 지반변형에 따른 열말뚝의 특성을 고찰하고자 하였다. 실험결과는 다음과 같다. 수평응력의 분포양상은 말뚝의 형상과 위치에 따라 삼각형, 사다리꼴, 사각형의 형태로 다양하게 나타났다. 휨모멘트는 B-type의 경우 outer pile이 inner pile보다 크게 나타났으나, H-type의 경우는 inner pile이 outer pile 보다 크게 나타났다. 수평저항력비$(R_f)$는 말뚝의 형상에 관계없이 열말뚝의 수평간격이 증가함에 따라 증가하는 경향으로 나타났다. 수평저항력의 작용점위치(Y/L)는 지반변위와 수평간격에 따라 큰 변화를 보이지 않으며, H-type이 B-type보다 조금 크게 나타났다.

군말뚝효과를 고려한 수동말뚝의 해석기법 (Analysis Method of Passive Piles considering group effect)

  • 정상섬;원진오;김병철
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2000년도 봄 학술발표회 논문집
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    • pp.151-158
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    • 2000
  • The lateral deformation of one row pile groups was investigated based on analytical study and a numerical analysis. The emphasis was on quantifing the load transfer of pile groups subjected to lateral soil movement. An analytical method to consider pile-soil interaction in weathered soil was developed using load-transfer curve methods. Through the comparative study, it is found that the prediction by present approach is in good agreement with the general trend observed by in-situ measurements.

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경사모래지반의 사각형 수동 열말뚝에 관한 실험적 연구 (A Study on the Rectangular-Shaped Passive Row Piles in Inclined Sand-Ground by Model Test)

  • 배종순;김지성;권민재
    • 한국지반공학회논문집
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    • 제25권11호
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    • pp.39-51
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    • 2009
  • 본 연구는 지반변형을 일으키는 경사모래지반에 매설된 사각형 수동열말뚝의 모형실험에 대한 것이다. 실험은 지반의 경사각을 조절하여 지반파괴를 유도 하였고, 말뚝의 형상, 위치, 간격을 달리하여 말뚝 거동을 측정하였다. 그 결과 수동말뚝에 작용하는 토압과 수평저항력 그리고 지반변형억제 효과를 확인하였다. 전면 폭이 넓은 B-type 말뚝이 측면 폭이 넓은 H-type 말뚝보다 지반변형억제 효과가 크게 나타났다. 사면경사에 따른 수평저항력 그래프를 이용하여 사면의 파괴각, 말뚝과 지반의 분담력을 알 수 있다.

측방변형을 받는 수동군말뚝의 거동분석-모형토조실험- (Analysis of Passive Pile Groups Subjected to Lateral Soil Movements-A Study on the Model Test-)

  • 장서용;원진오;정상섬
    • 한국지반공학회논문집
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    • 제15권6호
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    • pp.239-249
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    • 1999
  • 본 논문에서는 측방변형을 받는 수동 군말뚝의 거동특성을 연구하기 위해 말뚝의 휨강성, 말뚝중심간격, 상대밀도와 두부구속조건을 변화시킨 단독말뚝과 말뚝 중심간격이 말뚝직경(D)의 2.5, 5.0, 7.0배가 되는 1열 군말뚝에 대한 모형실험을 실시하였다. 실내모형실험은 주문진 표준사와 화강 풍화토에 근입된 수동말뚝에 직사각형 형태의 측방변위를 점진적으로 가하여 주문진 표준사에 대해 총 32회, 화강풍화토에 대해 총 16회의 실험을 실시하였다. 주문진 표준사에 대해서는 알루미늄과 PVC말뚝을, 화강풍화토에 대해서는 PVC 말뚝만을 사용하였다. 그 결과 수동말뚝에서 발생하는 최대 휨모멘트와 말뚝변위는 말뚝의 휨강성, 말뚝중심간격, 지반조건, 두부구속조건에 따라 크게 영향을 받는다는 것을 알 수 있었다. 1열 군말뚝은 두부 구속조건에 상관없이 말뚝중심간격 7.0D 이하에서 그룹효과가 나타났으며, 7.0D에서 거의 단독말뚝과 같은 거동을 보임을 알 수 있었다. 말뚝의 간격이 좁아짐에 따라 말뚝의 변위와 휨모멘트 모두 감소하였다. 아울러 말뚝의 휨강성이 클수록 휨모멘트는 증가하나 변위는 감소하고, 상대밀도가 클수록 휨모멘트와 변위는 커지는 경향을 보였다. 상대밀도에 대한 휨모멘트의 크기 변화는 고정단에 의한 실험보다 자유단에 의한 실험에서 더 크게 나타났다.

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Response of passively loaded pile groups - an experimental study

  • Al-abboodi, Ihsan;Sabbagh, Tahsin Toma;Al-salih, Osamah
    • Geomechanics and Engineering
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    • 제20권4호
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    • pp.333-343
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    • 2020
  • Preventing or reducing the damage impact of lateral soil movements on piled foundations is highly dependent on understanding the behavior of passive piles. For this reason, a detailed experimental study is carried out, aimed to examine the influence of soil density, the depth of moving layer and pile spacing on the behavior of a 2×2 free-standing pile group subjected to a uniform profile of lateral soil movement. Results from 8 model tests comprise bending moment, shear force, soil reaction and deformations measured along the pile shaft using strain gauges and others probing tools were performed. It is found that soil density and the depth of moving layer have an opposite impact regarding the ultimate response of piles. A pile group embedded in dense sand requires less soil displacement to reach the ultimate soil reaction compared to those embedded in medium and loose sands. On the other hand, the larger the moving depth, the larger amount of lateral soil movement needs to develop the pile group its ultimate deformations. Furthermore, the group factor and the effect of pile spacing were highly related to the soil-structure interaction resulted from the transferring process of forces between pile rows with the existing of the rigid pile cap.

연약지반상에 축조된 호안의 측방유동에 따른 안벽말뚝의 변위 (Displacement of Quaywall Pile by Lateral Movement of Revetment on Soft Ground)

  • 신은철;류인기;김종인
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2005년도 춘계 학술발표회 논문집
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    • pp.932-939
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    • 2005
  • Recently, the lateral displacement of the passive piles which installed under the revetment on soft ground is very important during the land reclamation work along the coastal line. The revetment on the soft clay develops the lateral displacement of the ground when the revetment loading is exceeded a certain limit. The lateral displacement of ground causes an excessive deformation of under structure itself and develops lateral earth pressure against the pile foundation as well. Especially passive piles subjected to lateral earth pressures are likely to have excessive horizontal displacement and large bending moment, which induces structural failure of pile foundation and harmful effects on superstructure. The subject of study is to investigate the later displacement of pile foundation during the construction of container terminal at the south port of Incheon. Actual field measurement data and finite element method(FEM) by AFFIMEX Ver 3.4 were used to analyze the displacement of pile and the vertical settlement of soft ground. This analysis was carried out at each sequence of construction work.

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Study on critical buckling load calculation method of piles considering passive and active earth pressure

  • Chen, Yong-Hui;Chen, Long;Xu, Kai;Liu, Lin;Ng, Charles W.W.
    • Structural Engineering and Mechanics
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    • 제48권3호
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    • pp.367-382
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    • 2013
  • Different types of long slender pile shall buckle with weak soil and liquefied stratum surrounded. Different from considering single side earth pressure, it was suggested that the lateral earth pressure can be divided into two categories while buckling: the earth pressure that prevent and promotes the lateral movement. Active and passive earth pressure calculation model was proposed supposing earth pressure changed linearly with displacement considering overlying load, shaft resistance, earth pressure at both sides of the pile. Critical buckling load calculation method was proposed based on the principle of minimum potential energy quoting the earth pressure calculation model. The calculation result was contrasted with the field test result of small diameter TC pile (Plastic Tube Cast-in-place pile). The fix form could be fixed-hinged in the actual calculation assuring the accuracy and certain safety factor. The contributions of pile fix form depend on the pile length for the same geological conditions. There exists critical friction value in specific geological conditions that the side friction has larger impact on the critical buckling load while it is less than the value and has less impact with larger value. The buckling load was not simply changed linearly with friction. The buckling load decreases with increased limit active displacement and the load tend to be constant with larger active displacement value; the critical buckling load will be the same for different fix form for the small values.

소성변형지반 중의 H형 말뚝에 작용하는 수평력 (Lateral Force Acting on H-piles in Plastically Deforming Ground)

  • 김영인
    • 한국해양공학회지
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    • 제15권4호
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    • pp.86-91
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    • 2001
  • In lateral ground flow, slope stability, and land slide problems, H-piles have been often used for a horizontally deforming ground to prevent the failure of mass of soil in a downward and outward movement of a slope. Here, Theoretical equations are derived to estimate the lateral force, assuming that the Mohr-coulomb's Plastic states occures in the ground just around H-piles. In this study, the mechanism of lateral force acting on passive pile that is in a row, situated in the ground undergoing plastic deformation was discussed, and its theoretical analysis was carried out considering the interval between H-piles. The solution of the theoretical equation derived from here showed resonable characteristic for constants of soil as well as for the interval, widths, and heights of H-pile.

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Numerical FEM assessment of soil-pile system in liquefiable soil under earthquake loading including soil-pile interaction

  • Ebadi-Jamkhaneh, Mehdi;Homaioon-Ebrahimi, Amir;Kontoni, Denise-Penelope N.;Shokri-Amiri, Maedeh
    • Geomechanics and Engineering
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    • 제27권5호
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    • pp.465-479
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    • 2021
  • One of the important causes of building and infrastructure failure, such as bridges on pile foundations, is the placement of the piles in liquefiable soil that can become unstable under seismic loads. Therefore, the overarching aim of this study is to investigate the seismic behavior of a soil-pile system in liquefiable soil using three-dimensional numerical FEM analysis, including soil-pile interaction. Effective parameters on concrete pile response, involving the pile diameter, pile length, soil type, and base acceleration, were considered in the framework of finite element non-linear dynamic analysis. The constitutive model of soil was considered as elasto-plastic kinematic-isotropic hardening. First, the finite element model was verified by comparing the variations on the pile response with the measured data from the centrifuge tests, and there was a strong agreement between the numerical and experimental results. Totally 64 non-linear time-history analyses were conducted, and the responses were investigated in terms of the lateral displacement of the pile, the effect of the base acceleration in the pile behavior, the bending moment distribution in the pile body, and the pore pressure. The numerical analysis results demonstrated that the relationship between the pile lateral displacement and the maximum base acceleration is non-linear. Furthermore, increasing the pile diameter results in an increase in the passive pressure of the soil. Also, piles with small and big diameters are subjected to yielding under bending and shear states, respectively. It is concluded that an effective stress-based ground response analysis should be conducted when there is a liquefaction condition in order to determine the maximum bending moment and shear force generated within the pile.

연약지반상 교대의 측방이동에 관한 연구 (A Study on Lateral Movement of Bridge Abutment on Soft Ground)

  • 홍원표;한중근
    • 한국지반공학회지:지반
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    • 제10권4호
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    • pp.53-66
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    • 1994
  • 연약지반에 위치한 교대의 기초로서 말뚝기초를 채택할 경우 교대배면의 연약지반에는 측방유동같은 문제등이 빈번히 발생하고 있다. 지반이 측방유동을 일으킬 경우 기초말뚝은 전형적인 수동말뚝임에도 불구하고 교대기초말뚝의 설계시 수동말뚝으로 설계되지 않고 있다. 이러한 이유로는 측방유동의 정확한 판정이 어려운 점과 현재까지 합리적인 설계법이 확립되지 않은점 등을 들 수 있다. 본 연구에서는 측방이동이 발생된 우리나라의 몇몇 교대를 조사하였다. 이 조사에 의거하여 연약지반의 측방유동 판정 및 교대의 측방이동을 예측할 수 있는 판정기준을 제시하고자 한다. 본 연구결과 사면안전율이 말뚝효과를 고려할 결우 1.8이하, 말뚝효과를 무시한 경우 1.5이하에서는 교대측방이동이 발생할 수 있는 것으로 나타났다. 특히 사면안전율이 말뚝효과를 무시한 경우 1.0이하, 말뚝효과를 고려할 경우 1.1 이하에서는 과대한 교대측방이동이 발생하는 것으로 나타났다. 또한 교대의 허용측방이동량을 5cm라고 하면 사면의 소요안전율은 1.4(말뚝효과를 무시한 경우) 혹은 1.6(말뚝효과를 고려한 경우)이상이 되어야 한다.

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