• Title/Summary/Keyword: embedment of the pile

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점토지반에 설치된 불균질말뚝의 상부길이 결정을 위한 매개변수 연구 (Parametric Study on Determining Upper Length of Nonhomogeneous Pile installed in Clay)

  • 이승현
    • 한국산학기술학회논문지
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    • 제14권5호
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    • pp.2505-2510
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    • 2013
  • 점토지반에서 횡방향하중을 받는 불균질말뚝과 균질말뚝의 거동에 영향을 미치는 인자를 파악하고 개발된 해석기법을 적용하여 매개변수 연구를 수행하였다. 매개변수연구에서 고려한 2개의 균질말뚝에 있어 말뚝 근입깊이에 따른 매개변수는 휨강성이 클수록 크게 계산되었다. 불균질말뚝에 대한 매개변수는 재료경계점에서 멀어짐에 따라 동일한 휨강성을 갖는 균질말뚝의 매개변수에 수렴하였다. 균질말뚝과 유사한 하중지지능력을 발휘할 수 있도록 하는 적절한 불균질말뚝의 상부길이를 결정하기 위해서는 균질말뚝과 불균질말뚝의 매개변수 변화양상과 해석을 통해 얻는 횡방향변위 및 부재력 등을 종합적으로 비교해야 한다.

수평하중을 받는 2×2 무리말뚝의 실험적 거동 특성 (Experimental Behavior Characteristics of 2×2 Group Pile under Lateral Loads)

  • 권오균;박종운
    • 한국지반공학회논문집
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    • 제34권6호
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    • pp.5-16
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    • 2018
  • 본 연구에서는 수평하중을 받는 연직 및 경사말뚝에 대하여 실내 대형 모형실험을 수행하여 무리말뚝의 배열방법과 경사각도에 따른 무리말뚝의 수평지지력 특성을 파악하였다. 또한 말뚝직경(D), 말뚝의 중심간격, 말뚝길이, 지반면 상부 말뚝돌출길이, 상재하중 등을 변화시켜 무리말뚝의 거동에 미치는 영향을 파악하였다. 이러한 실험 결과로부터 수평하중을 받는 $2{\times}2$ 배열 무리말뚝의 경우, 말뚝을 수직으로 시공하는 것보다 양쪽으로 경사지게 시공하는 것이 더 유리한 것으로 나타났다. 그리고 무리말뚝에서 수평지지력에 미치는 요소에 대한 실험 결과, 무리말뚝에 가장 큰 영향을 미치는 요소는 말뚝길이인 것으로 나타났다. 근입깊이비(L/D)가 26.5에서 36.5로 커지면, 수평지지력이 3~4배 이상 증가하는 것으로 나타났다. 그러나 말뚝 중심간격, 말뚝돌출길이 및 상재하중은 무리말뚝의 수평지지력에 큰 영향을 미치는 못하는 것으로 나타났다.

수치해석을 이용한 말뚝이 결합된 블록식방파제의 수평저항력에 관한 연구 (A Study of Lateral Resistance of Block Breakwater Combined with Piles)

  • 이원효;권순구;김태형
    • 한국해안·해양공학회논문집
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    • 제34권4호
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    • pp.100-108
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    • 2022
  • 본 연구는 말뚝이 결합된 블록식방파제에 대하여 수평하중 재하에 따른 블록과 말뚝의 거동을 파악하기 위하여 FEM 3차원 수치해석을 실시하였다. 지반구성모델은 Mohr-Coulomb 모델을 향상시킨 Modified Mohr Coulomb 모델을 적용하였다. 말뚝이 블록에만 관입된 경우, 사석층(H = 4.29 cm)까지 근입된 경우, 원지반속에 근입된 2H, 3H, 4H의 경우에 검토하였다. 실내모형실험 결과와 수치해석를 비교한 결과, 수평저항력-변위가 서로 유사한 거동을 보이는 것으로 나타났다. 말뚝의 근입깊이가 1H~ 2H까지는 말뚝이 회전거동을 보이고, 3H~4H의 경우에는 휨거동 양상을 보이는 것으로 해석되었다. 말뚝의 근입깊이가 3H 이상인 경우에는 말뚝이 휨거동을 보이므로 말뚝이 블록식방파제의 수평저항력에 크게 기여한다고 볼 수 있다. 본 연구 결과는 실제 크기 구조물 설계를 위한 다양한 수치해석 시 자료로 활용이 있을 것이다.

천해역 점성토 지반에 적합한 오탁방지막 기초 앵커 (Compatible Anchors of Silt Protector in Shallow Sea with Mud Seafloor Material)

  • 권기철;홍남식;송무효;최창규
    • 한국해양공학회지
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    • 제17권3호
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    • pp.7-12
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    • 2003
  • The Navy has tested the holding capacity of many kinds of anchors in order to propose the design chart for the holding capacity of drag-embedment anchors. The design chart is only applicable up to the cable bottom angle 60 when load is raised to the ultimate weight. However, the anchor experiences a significant uplift force when the angle is above 60 in shallow seas. In this paper, the procedure for the estimation of the holding capacity of anchors in mud is proposed. Drag-embedment anchors do not function well when there is a significant uplift component of load in soft seafloor materials, such as mud. Under these loading and seafloor conditions, gravity anchors seems to be more efficient. However, they are too heavy for their holding capacity. Therefore, suction pile (hollow concrete block) is more beneficial to the foundntion of silt protector in shallow sea with mud seafloor materials.

Incremental filling ratio of pipe pile groups in sandy soil

  • Fattah, Mohammed Y.;Salim, Nahla M.;Al-Gharrawi, Asaad M.B.
    • Geomechanics and Engineering
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    • 제15권1호
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    • pp.695-710
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    • 2018
  • Formation of a soil plug in an open-ended pile is a very important factor in determining the pile behavior both during driving and during static loading. The degree of soil plugging can be represented by the incremental filling ratio (IFR) which is defined as the change in the plug length to the change of the pile embedment length. The experimental tests carried out in this research contain 138 tests that are divided as follows: 36 tests for single pile, 36 tests for pile group ($2{\times}1$), 36 tests for pile group ($2{\times}2$) and 30 pile group ($2{\times}3$). All tubular piles were tested using the poorly graded sand from the city of Karbala in Iraq. The sand was prepared at three different densities using a raining technique. Different parameters are considered such as method of installation, relative density, removal of soil plug with respect to length of plug and pile length to diameter ratio. The soil plug is removed using a new device which is manufactured to remove the soil column inside open pipe piles group installed using driving and pressing device. The principle of soil plug removal depends on suction of sand inside the pile. It was concluded that the incremental filling ratio (IFR) is changed with the changing of soil state and method of installation. For driven pipe pile group, the average IFR for piles in loose is 18% and 19.5% for L/D=12 and 15, respectively, while the average of IFR for driven piles in dense sand is 30% and 20% for L/D=12 and L/D=15 respectively. For pressed method of pile installation, the average IFR for group is zero for loose and medium sand and about 5% for dense sand. The group capacity increases with the increase of IFR. For driven pile with length of 450 mm, the average IFR % is about 30.3% in dense sand, 14% in medium and 18.3% for loose sand while when the length of pile is 300 mm, the percentage equals to 20%, 17% and 19.5%, respectively.

Application of numerical simulation for the analysis and interpretation of pile-anchor system failure

  • Saleem, Masood
    • Geomechanics and Engineering
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    • 제9권6호
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    • pp.689-707
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    • 2015
  • Progressive increase in population causing land scarcity, which is forcing construction industry to build multistory buildings having underground basements. Normally, basements are constructed for parking facility. This research work evaluates important factors which have caused the collapse of pile-anchor system at under construction five star hotel. 21 m deep excavation is carried out, to have five basements, after installation of 600 mm diameter cast in-situ contiguous concrete piles at plot periphery. To retain piles and backfill, soil anchors are installed as pit excavation is proceeded. Before collapse, anchors are designed by federal highway administration procedure and four anchor rows are installed with three strands per anchor in first row and four in remaining. However, after collapse, system is modeled and analyzed in plaxis using mohr-coulomb method. It is investigated that in-appropriate evaluation of soil properties, additional surcharge loads, lesser number of strands per anchor, shorter grouted body length and shorter pile embedment depth caused large deformations to occur which governed the collapse of east side pile wall. To resume work, old anchors are assumed to be standing at one factor of safety and then system is analyzed using finite element approach. Finally, it is concluded to use four strands per anchor in first new row and five strands in remaining three with increase in grouted and un-grouted body lengths.

3D numerical analysis of piled raft foundation for Ho Chi Minh City subsoil conditions

  • Amornfa, Kamol;Quang, Ha T.;Tuan, Tran V.
    • Geomechanics and Engineering
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    • 제29권2호
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    • pp.183-192
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    • 2022
  • Piled raft foundations are widely used and effective in supporting high-rise buildings around the world. In this study, a piled raft system was numerically simulated using PLAXIS 3D. The settlement comparison results between the actual building measurements and the three-dimensional (3D) numerical analysis, were in good agreement, indicating the usefulness of this approach for the evaluation of the feasibility of using a piled raft foundation in Ho Chi Minh City subsoil. The effects were investigated of the number of piles based on pile spacing, pile length, raft embedment on the settlement, load sharing, bending moments, and the shear force of the piled raft foundation in Ho Chi Minh City subsoil. The results indicated that with an increased number of piles, increased pile length, and embedding raft depth, the total and differential settlement decreased. The optimal design consisted of pile numbers of 60-70, corresponding to pile spacings is 5.5-6 times the pile diameter (Dp), in conjunction with a pile length-to-pile diameter ratio of 30. Furthermore, load sharing by the raft, by locating it in the second layer of stiff clay, could achieve 66% of the building load. The proposed model of piled raft foundations could reduce the total foundation cost by 49.61% compared to the conventional design. This research can assist practicing engineers in selecting pile and raft parameters in the design of piled raft foundations to produce an economical design for high-rise buildings in Ho Chi Minh City, Viet Nam, and around the world.

점성토 지반에 설치되는 앵커로 지지된 널말뚝의 내진설계 (Seismic Design of Anchored Sheet Pile Walls in c-0 Soils)

  • 김홍택
    • 한국지반공학회지:지반
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    • 제8권1호
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    • pp.41-58
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    • 1992
  • 본 연구에서는 항만공사에 이용되는 앵커로 지지된 널말뚝의 내진설계를 위한 해석방법의 제시가 이루어 졌다. 제시된 해석방법은 지진하중시의 동수압을 포함하였으며, 침투에 의한 영향을 고려할 경우에도 적용이 가능하다. 또한 적용범 위는 모래 및 점성토(c-0 soil)로 이루어진 지반의 경우이고, 자유지지법을 토대로 하였다. 아울러, 널말뚝 양쪽면의 수위차, 앵커의 위치, 벽마찰각, 준설저면의 경사각, 부착력, 점착력 등이 근입깊이, 앵커하중 및 최대모멘트에 미치는 영향을 제시된 해석방법을 토대로 분석하였다. 이외에도 서로 다른 안전율 정의에 관한 비교 및 내진설계시의 유의 사항에 대한 검토가 이루어 졌다.

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블록식 방파제의 수평저항력 평가를 위한 실내모형실험 II : 보강형 싱글블럭의 반복수평 하중에 대한 저항 (Small Scale Modelling Experiments for Evaluating Lateral Resistance of Block-Type Breakwater II: A Single Block Reinforced with Piles under Cyclic Lateral Loads)

  • 강기천;김지성
    • 한국지반신소재학회논문집
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    • 제20권4호
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    • pp.105-112
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    • 2021
  • 항만구조물의 경우 정적인 하중 뿐만 아니라 파압과 같이 반복적인 하중을 받는 구조물임에 따라 반복적인 하중을 받는 구조물의 특성을 파악하는 것이 중요하다. 따라서 본 연구는 반복 수평하중에 의한 말뚝으로 보강된 블록식 방파제의 거동특성을 실내모형실험을 통해 구하였다. 말뚝의 근입 깊이가 깊어질수록 수평저항력이 증가하는 경향이 나타났으며, 하중이 반복될수록 수평저항력의 기울기는 점차 완만하게 나타났다. 휨모멘트는 후열말뚝이 전열말뚝보다 크게 나타났다. 지반내에서의 말뚝의 휨모멘트는 Broms(1964)의 사질토지반에서 말뚝두부 자유일 때와 유사하게 나타났다.

Modified p-y curves to characterize the lateral behavior of helical piles

  • Hyeong-Joo, Kim;James Vincent, Reyes;Peter Rey, Dinoy;Tae-Woong, Park;Hyeong-Soo, Kim;Jun-Young, Kim
    • Geomechanics and Engineering
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    • 제31권5호
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    • pp.505-518
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    • 2022
  • This study introduces soil resistance multipliers at locations encompassed by the zone of influence of the helix plate to consider the added lateral resistance provided to the helical pile. The zone of influence of a helix plate is a function of its diameter and serves as a boundary condition for the modified soil resistance springs. The concept is based on implementing p-multipliers as a reduction factor for piles in group action. The application of modified p-y springs in the analysis of helical piles allows for better characterization and understanding of the lateral behavior of helical piles, which will help further the development of design methods. To execute the proposed method, a finite difference program, HPCap (Helical Pile Capacity), was developed by the authors using Matlab. The program computes the deflection, shear force, bending moment, and soil resistance of the helical pile and allows the user to freely input the value of the zone of influence and Ω (a coefficient that affects the value of the p-multiplier). Results from ten full-scale lateral load tests on helical piles embedded at depths of 3.0 m with varying shaft diameters, shaft thicknesses, and helix configurations were analyzed to determine the zone of influence and the magnitude of the p-multipliers. The analysis determined that the value of the p-multipliers is influenced by the ratio between the pile embedment length and the shaft diameter (Dp), the effective helix diameter (Dh-Dp), and the zone of influence. Furthermore, the zone of influence is recommended to be 1.75 times the helix diameter (Dh). Using the numerical analysis method presented in this study, the predicted deflections of the various helical pile cases showed good agreement with the observed field test results.