• 제목/요약/키워드: pile shear

검색결과 311건 처리시간 0.022초

대형직접전단시험에 의한 뿌리말뚝의 거동 및 보강효과 (Reinforcing Effect and Behaviors of Root-Pile in Heavy-Duty Direct Shear Test)

  • 한중근;장신남
    • 한국환경복원기술학회지
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    • 제5권3호
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    • pp.23-30
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    • 2002
  • In recently, using of steel reinforcements by reinforcing materials of the reinforced earth, micro-pile and root-pile etc,. is wide-spreading in the stabilizing control of cutting and embankment slopes, but the failure mechanism of reinforced earth as well as the effect of insert angles or types of reinforcement and others are not defined clearly. In this study, therefore heavy-duty direct shear tests were exercised on the reinforced soil and the non-reinforced soil, which was executed for research on the interaction of soil-reinforcement and theirs behavior. The hardness and softness and the standard sands were used for modeling of reinforced soil, the material constants for the computer simulation were estimated from the results of CD-Test. The effects of reinforcing and of friction increasing on the softness, area ratio of reinforcements is equal, were the better than them of the hardness, as well the reinforcing effects of shear strength without regard to the area ratio is much the same at $10^{\circ}$, insert angle of reinforced bar, differ from them of the existing study. Then, the results of numerical analysis showed that the behavior of reinforcements displayed bending resistance and shear resistance at $15^{\circ}$ and $30^{\circ}$, respectively. Also, the state of strain transfer was observed and the behavior of resistance mechanism on reinforcements presented almost the same them of landslides stabilizing pile.

Dynamic impedance of a 3×3 pile-group system: Soil plasticity effects

  • Gheddar, Kamal;Sbartai, Badreddine;Messioud, Salah;Dias, Daniel
    • Structural Engineering and Mechanics
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    • 제83권3호
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    • pp.377-386
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    • 2022
  • This paper considers dynamic impedance functions and presents a detailed analysis of the soil plasticity influence on the pile-group foundation dynamic response. A three-dimensional finite element model is proposed, and a calculation method considering the time domain is detailed for the nonlinear dynamic impedance functions. The soil mass is modeled as continuum elastoplastic solid using the Mohr-Coulomb shear failure criterion. The piles are modeled as continuum solids and the slab as a structural plate-type element. Quiet boundaries are implemented to avoid wave reflection on the boundaries. The model and method of analysis are validated by comparison with those published on literature. Numerical results are presented in terms of horizontal and vertical nonlinear dynamic impedances as a function of the shear soil parameters (cohesion and internal friction angle), pile spacing ratio and frequencies of the dynamic signal.

Shaft resistance of bored cast-in-place concrete piles in oil sand - Case study

  • Barr, L.;Wong, R.C.K.
    • Geomechanics and Engineering
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    • 제5권2호
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    • pp.119-142
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    • 2013
  • Pile load tests using Osterberg cells (O-cell) were conducted on cast-in-place concrete piles founded in oil sand fill and in situ oil sand at an industrial plant site in Fort McMurray, Alberta, Canada. Interpreted pile test results show that very high pile shaft resistance (with the Bjerrum-Burland or Beta coefficient of 2.5-4.5) against oil sand could be mobilized at small relative displacements of 2-3% of shaft diameter. Finite element simulations based on linear elastic and elasto-plastic models for oil sand materials were used to analyze the pile load test measurements. Two constitutive models yield comparable top-down load versus pile head displacement curves, but very different behaviour in mobilization of pile shaft and end bearing resistances. The elasto-plastic model produces more consistent matching in both pile shaft and end bearing resistances whereas the linear elastic under- and over-predicts the shaft and end bearing resistances, respectively. The mobilization of high shaft resistance in oil sand under pile load is attributed to the very dense and interlocked structure of oil sand which results in high matrix stiffness, high friction angle, and high shear dilation.

Recycling of In-site waste soil material to fill a hollow between PHC pile and Earthen wall

  • Jang, Myung-Houn;Choi, Hee-Bok
    • 한국건축시공학회지
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    • 제12권5호
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    • pp.510-517
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    • 2012
  • This study evaluated the recycling potential of in-site waste soil as pile back filling material (PBFM). We performed experiments to check workability, segregation resistance, bond strength, direct shear stress test, and dynamic load test using in-site waste soil in coastal areas. We found that PBFM showed better performance than general cement paste in terms of workability, segregation resistance, and bond strength. On the other hand, the structural performance of PBFM was slightly lower than that of general cement paste due to the skin friction force of pile by Pile Driving Analyzer and direct shear stress. However, because this type of performance degradation in terms of structure can be improved through the use of piles with larger diameter or by changing the type of pile, considering the economics and environment, we considered that recycling of PBFM has sufficient value.

CT형강 전단연결재가 적용된 합성형 PHC벽체파일-하부슬래브 연결부 성능에 관한 실험적 연구 (An Experimental Study on Structural Capacity of Joint Between Composite PHC Wall Pile and Bottom Slab with CT Shear Connector)

  • 마호성;원정훈;이종구
    • 한국강구조학회 논문집
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    • 제25권5호
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    • pp.531-541
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    • 2013
  • 본 연구에서는 합성형 PHC 벽체파일의 CT형강 전단연결재가 벽체파일과 하부 슬래브와의 연결부에서 인장력에 저항하는 앵커의 성능을 갖는지 직접 인발실험을 통해 분석하였다. 다양한 실물 크기 실험체들의 파괴형상과 하중-변위 곡선으로부터 CT형강의 인발파괴를 방지하기 위해서는 CT형강 복부 홀에 관통철근을 배치하여 강도를 증가시켜야 함을 알 수 있다. 관통철근이 설치된 다양한 단면의 실험체들을 대상으로 지지점 거리를 변화시켜 파괴형상과 극한강도를 분석한 결과, CT형강의 인발파괴 전에 벽체파일 자체의 콘크리트 인장파괴가 모든 실험체에서 발생하므로 적용된 CT형강 전단연결재는 벽체파일과 하부 슬래브 연결부의 발생 인장력에 대해 충분히 저항할 수 있다.

성토지지말뚝으로 지지된 성토지반내 펀칭전단파괴 (Punching shear failure in pile-supported embankment)

  • 홍원표;홍성원;송제상;이재호
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2010년도 춘계 학술발표회
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    • pp.369-378
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    • 2010
  • In this study, a computer program to predict the behavior of laterally loaded single pile and pile groups was developed by using a beam-column analysis in which the soils are modeled as nonlinear springs by a family of p-y curves for subgrade modulus. The special attention was given to the lateral displacement of a single pile and pile groups due to the soil condition and the cap rigidity. The analysis considering group effect was carried out for $2{\times}2$ and $3{\times}3$ pile groups with the pile spacing 3.0B, 4.0B and 5.0B. Based on the results obtained, it is found that the overall distributions of deflection, slope, moment, and shear force in a single pile give a reasonable results irrespective of cap connectivity conditions. It is also found that even though there are some deviations in deflection prediction compared with the observed ones, the prediction by present analysis simulates much better the general trend observed by the centrifuge tests than the numerical solution predicted by PIGLET.

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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.

기계기초의 지반동력학적 해석 (Soil Dynamics for Vibrating Machine Foundation)

  • 전준수
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2003년도 봄 학술발표회 논문집
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    • pp.3-25
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    • 2003
  • In this presentation, soil dynamics for vibrating machine foundation is briefly stated, and the result of a model pile test is presented. Analystical methods used in solving for the stiffness and damping factor for pile-soil system are also treated and the results of the test and the calculated values are compared.

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점토지반에 적용된 저회다짐말뚝의 치환율에 따른 압밀침하특성 및 전단특성 (Characteristics for Consolidation and Shear Strength of Bottom Ash Compaction Pile According to Replacement Ratio in Clay)

  • 박세현;지성현;천병식
    • 한국지반환경공학회 논문집
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    • 제11권7호
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    • pp.57-63
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    • 2010
  • 국토의 70%를 산이 차지하고 있는 우리나라의 여건으로 볼 때 효율적이고 경제적인 연약지반 개량의 필요성이 점차 높아지고 있다. 해양개발을 위한 연약지반개량 공법에는 모래다짐말뚝공법, 치환공법, 프리로딩공법, 대기압공법, 지하수위 저하공법, 팩드레인공법, 생석회말뚝공법 등이 있는 데, 그 중 모래다짐말뚝공법은 모래의 수급이 어려워져 수입하는 등의 경제적인 문제점과 모래채취로 인한 자연 훼손의 문제점을 야기하므로 이에 대한 대책공법이 시급한 실정이다. 최근, 모래와 공학적 성질이 유사한 화력발전소 부산물인 저회를 대체 재료로 활용하기 위한 연구가 이루어지고 있으나 연약지반 개량 재료로 활용하기 위한 연구는 미미한 실정이다. 따라서, 본 연구에서는 10~80%의 치환율로 복합지반을 조성하여 대형직접전단시험, 전단시험, 표준압밀시험을 실시한 후 저회다짐말뚝의 전단특성과 압밀특성을 규명하였다. 연구결과 저회다짐말뚝의 치환율이 증가에 따라 전단강도 정수는 증대하고, 침하저감 계수 및 $t_{90}$은 감소하는 경향이 나타났다.

견고한 점토층에서 실시된 터널근접시공으로 인한 단독말뚝의 거동에 대한 연구 (A Study on the Behaviour of Single Piles to Adjacent Tunnelling in Stiff Clay)

  • 전영진;이철주
    • 한국지반환경공학회 논문집
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    • 제16권6호
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    • pp.13-22
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    • 2015
  • 본 연구에서는 3차원 유한요소 해석을 수행하여 터널굴착에 의한 말뚝의 거동변화를 지배하는 말뚝선단에 대한 터널의 상대 위치를 고려하여 분석하였다. 수치해석 결과를 순수하게 터널굴착으로 발생한(Tunnelling-induced) 말뚝두부의 침하, 상대변위, 체적손실률(Volume loss), 말뚝의 축력, 전단응력 그리고 겉보기안전율 등을 분석하였다. 터널과 말뚝선단의 상대위치를 고려했을 때 말뚝선단이 터널굴착으로 인한 지반침하 영향권 내부에 존재하는 경우 Tunnelling-induced 말뚝두부의 침하는 지표면의 침하보다 크게 나타났으며, 이는 말뚝에 Tunnelling-induced 인장력을 발생시켰다. 반대로 말뚝선단이 터널굴착으로 인한 지반침하 영향권 외부에 존재할 경우, 말뚝상부에서 유발된 하향의 전단응력으로 인해 말뚝에는 Tunnelling-induced 압축력이 작용하였다. 수치해석을 통해 분석된 하중-변위 관계를 이용하여 겉보기안전율을 분석한 결과 말뚝선단이 터널굴착으로 인한 지반침하 영향권 내부에 존재할 경우 말뚝의 겉보기안전율은 평균 약 36% 감소하는 것으로 나타났다. 터널의 상대위치에 따른 전단응력전이 매커니즘을 Tunnelling-induced 말뚝축력, 전단응력과 말뚝의 겉보기안전율을 고려하여 심도 있게 고찰하였다.