• 제목/요약/키워드: pile group

검색결과 243건 처리시간 0.023초

연직하중을 받는 무리말뚝의 새로운 설계 방법 (New Design Method for Pile Group under Vertical Load)

  • 이수형;정충기
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2002년도 기초기술학술발표회
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    • pp.11-29
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    • 2002
  • Current design of pile group is based on the estimation of the overall bearing capacity of a pile group from that of a single pile using a group efficiency. However, the behaviors of a pile group are influenced by various factors such as method of pile installation, pile-soil-pile interaction, cap-soil-pile interaction, etc. Thus it is practically impossible to take into account these factors reasonably with the only group efficiency, In this paper, a new method for the design of pile groups is proposed, where the significant factors affecting the behavior of a pile group are considered separately by adopting several efficiencies. Furthermore, in the proposed method, the load transfer characteristics of piles and the difference of pile behaviors with respect to the pile locations in group can be taken into account. The efficiencies for the method are determined using the settlement failure criterion, which is consistent with the concept of allowable settlement for structures. The efficiencies calculated from the results of existing model tests are presented, and the bearing capacity of a pile group in the other model test is calculated and compared with that from the test result, to verify the validity of the proposed method.

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Nonlinear response of the pile group foundation for lateral loads using pushover analysis

  • Zhang, Yongliang;Chen, Xingchong;Zhang, Xiyin;Ding, Mingbo;Wang, Yi;Liu, Zhengnan
    • Earthquakes and Structures
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    • 제19권4호
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    • pp.273-286
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    • 2020
  • The pile group foundation is widely used for gravity pier of high-speed railway bridges in China. If a moderate or strong earthquake occurs, the pile-surrounding soil will exhibit obvious nonlinearity and significant pile group effect. In this study, an improved pushover analysis model for the pile group foundation with consideration of pile group effect is presented and validated by the quasi-static test. The improved model uses simplified springs to simulate the soil lateral resistance, side friction and tip resistance. PM (axial load-bending moment) plastic hinge model is introduced to simulate the impact of the axial force changing of pile group on their elastic-plastic characteristics. The pile group effect is considered in stress-stain relations of the lateral soil resistance with a reduction factor. The influence factors on nonlinear characteristics and plastic hinge distribution of the pile group foundation are discussed, including the pier height, longitudinal reinforcement ratio and stirrup ratio of the pile, and soil mechanical parameters. Furthermore, the displacement ductility factor, resistance increase factor and yielding stiffness ratio are provided to evaluate the seismic performance of soil-pile system. A case study for the pile group foundation of a railway simply supported beam bridge with a 32 m-span is conducted by numerical analysis. It is shown that the ultimate lateral force of pile group is not determined by the yielding force of the single one in these piles. Therefore, the pile group effect is essential for the seismic performance evaluation of the railway bridge with pile group foundation.

연직하중을 받는 무리말뚝의 새로운 설계 방법 (New Design Method for Pile Group Under Vertical Load)

  • 이수형;정충기
    • 한국지반공학회논문집
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    • 제19권1호
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    • pp.31-40
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    • 2003
  • 현행 무리말뚝 설계에서는 하나의 무리효율을 이용하여 개별말뚝의 지지력으로부터 전체 무리말뚝의 지지력을 산정하고 있다. 그러나, 무리말뚝의 지지 거동은 말뚝 시공 방법, 말뚝지반말뚝 상호작용, 캡-지반말뚝 상호작용 등의 복합적인 영향을 받으며, 따라서 하나의 무리효율만으로 이렇게 다양한 영향 요소들을 합리적으로 고려하는 것은 불가능하다. 본 논문에서는 다양한 효율을 도입하여, 이들 영향 요소들을 분리하여 고려할 수 있는 무리말뚝 설계 방법을 제안하였다. 제안된 방법에서는 이 외에도 말뚝의 하중 전이 특성과 위치에 따른 말뚝 거동의 차이를 고려할 수 있으며, 침하 기준을 이용한 효율의 산정을 통해 침하 관점의 설계가 이루어질 수 있다. 기존의 모형실험 결과로부터 제안된 설계 방법에 적용할 수 있는 효율을 산정하여 제시하였으며, 이를 이용하여 또 다른 모형 실험의 지지력을 산정하고 시험결과와 비교함으로써 제안된 방법의 유효성을 평가하였다.

Effect on Dynamic Behavior of Group Piles with Changing Thickness of Pile Cap

  • Jeong, Kusic;Ahn, Sangro;Kim, Seongho;Ahn, Kwangkuk
    • 한국지반환경공학회 논문집
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    • 제19권7호
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    • pp.5-11
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    • 2018
  • Instead of a single pile, group piles are usually used for the pile foundation. If the earthquake occurs in the ground where group piles are installed, dynamic behavior of group piles are affected not only by interaction of piles and the ground movement but also by the pile cap. However, in Korea, the pile cap influence is not taken account into the design of group piles. Research on dynamic behavior of group piles has been performed only to verify interaction of piles and the ground and has not considered the pile cap as a factor. In this research, 1g shaking table model tests were performed to verify the thickness of the pile cap affects dynamic behavior of group piles that were installed in the ground where the earthquake would occur. The test results show that, as thickness of the pile cap increased, acceleration and horizontal displacement of the pile cap decreasd while vertical displacement of the pile cap increased. The results also showed that, among the group files tested, acceleration, horizontal displacement, and vertical displacement of the bearing pile are smaller than those of the friction pile.

Numerical investigations of pile load distribution in pile group foundation subjected to vertical load and large moment

  • Ukritchon, Boonchai;Faustino, Janine Correa;Keawsawasvong, Suraparb
    • Geomechanics and Engineering
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    • 제10권5호
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    • pp.577-598
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    • 2016
  • This paper presents a numerical study of pile force distribution in a pile group foundation subjected to vertical load and large moment. The physical modeling of a pile foundation for a wind turbine is analyzed using 3D finite element software, PLAXIS 3D. The soil profile consists of several clay layers, which are modeled as Mohr-Coulomb material in an undrained condition. The piles in the pile group foundation are modeled as special elements called embedded pile elements. To model the problem of a pile group foundation, a small gap is created between the pile cap and underlying soil. The pile cap is modeled as a rigid plate element connected to each pile by a hinge. As a result, applied vertical load and large moment are transferred only to piles without any load sharing to underlying soil. Results of the study focus on pile load distribution for the square shape of a pile group foundation. Mathematical expression is proposed to describe pile force distribution for the cases of vertical load and large moment and purely vertical load.

가는 모래 지반에서의 말뚝의 동적 군말뚝 효과 분석 (The Evaluation of Dynamic Group Pile Effect in fine sand)

  • 유민택;양의규;김현욱;김명모
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2009년도 세계 도시지반공학 심포지엄
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    • pp.877-883
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    • 2009
  • Shaking table tests are performed to evaluate the dynamic group pile effect in fine sand. Single pile tests and $2{\times}4$ group pile tests are performed on 3D pile spacing. Dynamic p-y backbone curves are obtained to evaluate dynamic group pile effect by using dynamic p-y curve of single pile. And dynamic group pile p-multiplier is estimated by dynamic p-y backbone curve. Dynamic p-multiplier can be calculated by using subground reaction ratio of dynamic p-y backbone curve which is the same displacement of p-y curve peak point As the result, dynamic group pile effects are evaluated in terms of a shaking frequency, a shaking acceleration, and a relative density. Dynamic group pile p-multiplier is the largest at lead pile, and the value decrease at middle pile and trail pile. p multiplier increases as increasing input acceleration and decreasing relative density. This results coincide with NCHRP's research which suggest p multiplier increases as increasing pile cap displacement.

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모형시험을 통한 무리말뚝 내 말뚝의 위치별 부주면마찰력에 관한 연구 (A Study on the Negative Skin Friction Depending upon the Locations of Piles in a Group Using Model Test)

  • 임종석;박종희;심종선
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2009년도 세계 도시지반공학 심포지엄
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    • pp.923-932
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    • 2009
  • Generally most of pile foundations are constructed with group pile rather than single pile. The study on efficiency and bearing capacity which are major elements for rational design of this group pile has been actively progressed, whereas there are truly only a few studies of negative skin friction working on group pile due to the consolidation of ground. The purpose of this study is to determine, among the elements of negative skin friction applied to pile, the occurrence modality of negative skin friction at center, side, and corner of $3{\times}3$ group pile using model test and, based on those observations, to propose the effective design direction of group pile.

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말뚝-캡 강성을 고려한 군말뚝기초의 해석 (Analysis of Pile Groups Considering Pile-Cap Interaction)

  • 정상섬;원진오;허정원
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2001년도 봄 학술발표회 논문집
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    • pp.363-370
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    • 2001
  • A computationally efficient algorithm to analyze a group pile behavior is proposed by consideration of both soil-pile and pile-cap interactions. Using toad transfer method the nonlinear characteristics of the soil-pile interaction for a single pile is modeled by piecewise linear soil springs (p-y, t-z, and q-z curves). Beam-column method, one of the most practical approaches, is used for numerical modeling of the soil-pile system. In addition to the group effect resulting from the soil-pile-soil interaction, for a more realistic analysis it is essential to consider the effect of pile-cap interaction including geometric configuration of the piles in a group and conectivity conditions between piles and the cap. This paper mainly focuses on the pile-cap interaction and the development of a rational numerical procedure of its incorporation with the beam-column method.

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연직하중을 받는 소규모 무리말뚝의 거동 (Behavior of Small-Scale Pile Group Under Vertical Loading)

  • 이영남;이승현;박영호
    • 한국지반공학회논문집
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    • 제17권6호
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    • pp.37-46
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    • 2001
  • 무리말뚝의 하중지지능력에서 말뚝캡이 부담하는 비율을 파악하고 무리말뚝을 구성하는 개개 말뚝의 하중전이 특성을 알아보고자 재하시험을 수행하였다. 직경 92.5mm의 강관말뚝 24본(4개씩 6열)을 지표 아래 3m 깊이까지 근입 시컥 풍화암 상단에 말뚝선단이 위치하도록 하였다. 최대하중 320t을 지표면에 접촉되어 있는 $1.5\times2.3m$ 크기의 말뚝캡에 재하하였다. 최대 시험하중인 320t에서는 말뚝캡이 전체하중의 약 22%에 해당하는 하중을 분담하였다. 무리 말뚝 재하시험시 말뚝의 평균 극한지지력은 16.4t이며, 이 값은 말뚝캡을 타설하기 전에 무리말뚝의 모서리에 위치한 말뚝에 대하여 수행한 단말쪽 재하시험으로부터 구한 극한지지력보다 상당히 크게 나타났다. 변위장중첩 효과로 인하여 무리말뚝 중앙에 위치한 말뚝은 작은 하중이 작용하여도 외곽부의 말뚝과 같은 침하량을 기록한 것으로 나타났다. 무리말뚝에서는 주면마찰력의 분담율이 전 하중단계에서 약 60%로 일정하나 단말뚝 시험에서는 하중이 증가함에 따라 주면마찰력의 분담율이 82%에서 65%로 감소하였다.

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사질토 지반에서 말뚝 캡 크기가 무리말뚝의 동적거동에 미치는 영향 (The Effect of Dynamic Behavior on Changing Pile Cap Size of Pile Group in Sandy Soil)

  • 이현근;안광국;강홍식
    • 한국지반환경공학회 논문집
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    • 제20권8호
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    • pp.5-12
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    • 2019
  • 상부구조물은 여러 개의 말뚝 기초를 말뚝 캡으로 연결한 무리말뚝이 사용되고 있다. 무리말뚝 설계 시 상부구조물의 연직 및 수평하중은 말뚝 기초가 지지할 뿐 말뚝 캡의 지지효과는 무시하였다. 그러나 최근 상부구조물의 연직하중에 대한 안정성 범위에서 말뚝 기초의 사용량을 줄이기 위해 말뚝 캡의 지지효과를 반영하기 위한 연구가 진행되고 있으나 수평하중에 대한 말뚝 캡의 지지효과에 관한 연구는 미비한 실정이다. 이에 본 연구에서는 수평 지진 하중을 받는 무리말뚝에서 말뚝 캡의 변화가 무리말뚝에 미치는 영향을 확인하기 위해 상부구조물을 지지하는 무리말뚝의 말뚝 캡 크기를 변화시켜 진동대 모형실험을 수행하였다. 그 결과 말뚝 캡의 크기가 상부구조물 및 무리말뚝의 동적 거동에 영향을 미치는 것으로 확인되었으며, 말뚝 캡의 크기가 증가할수록 지반 구속 효과로 인해 지반과 말뚝 기초가 일체 거동하는 것으로 나타났다.