• 제목/요약/키워드: Ultimate bearing load

검색결과 246건 처리시간 0.023초

PAR에 의한 강관 말뚝의 극한 수직 및 수평 지지력 예측 (Prediction on Ultimate Vertical and Horizontal Bearing Capacity of Steel Pipe Piles by Means of PAR)

  • 최용규
    • 한국지반공학회지:지반
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    • 제13권4호
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    • pp.13-24
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    • 1997
  • 말뚝 해석 프로그램인 PAR에 의하여 말뚝의 극한 수직 및 수평 지지력을 예측할 수 있는 방법을 제안하였으며,현장에서 수행된 말뚝재하시험 결과들을 이용하여 PAR에 의한 사례연구를 수행하였다. PAR에 의해 해석된 말뚝의 극한지지력은 정재하시험에서 구한 지지력에 대하여 약 15%이내의 오차범위에 들었다. 또한, 강관말뚝들에 수행된 정재하시헙, 정.동재하시험 그리고 PDA 결과들을 비교하였으며, PAR에 의해 극한지지력을 예측하였다. PAR을 이용하면 말뚝의 축방향 하중의 분포를 예측할 수 있었으며, 여기서, 하중전이해석도 근사적으로 수행할 수 있었다.

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현장타설말뚝 선단부의 위치에 따른 극한지지력 변화 (Changes in Ultimate Bearing Capacity according to the Position of the End of the Drilled Shaft)

  • 최동노;박경호;김채민;김태형
    • 한국지반신소재학회논문집
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    • 제21권3호
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    • pp.49-59
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    • 2022
  • 본 연구는 현장타설말뚝의 합리적인 적정설계를 알아보기 위하여 수행하였다. 즉, 현장타설말뚝의 지지층 변경에 따른 극한지지력변화를 알아보기 위하여 현장타설말뚝에 대해 실시된 양방향 말뚝재하시험을 이용하여 역해석을 수행하였다. 역해석된 자료를 바탕으로 두부재하하중에 대한 수치해석을 진행하여 대상 지반에서의 극한지지력을 Davisson 판정법으로 평가하였다. 말뚝 단부가 풍화암층 상단에 안착된 1개의 경우와 풍화토 내 서로 다른 위치에 근입된 3개의 경우에 대한 수치해석 결과, 모든 경우에서 충분한 극한지지력을 확보하는 것으로 나타났다. 즉 말뚝의 단부가 풍화암 근입이 아닌 풍화암층 상단에 안착된 경우와 풍화토 내에 근입된 현장타설말뚝도 충분한 지지력을 가지고 있어 현장타설말뚝의 지지층으로 활용할 수 있음을 알 수 있다.

단일 쇄석다짐말뚝의 지지력 특성과 주요 설계 파라미터에 관한 고찰 (The study on the Characteristics of Ultimate Bearing Capacity and Major Design Parameters for Single Stone Column)

  • 천병식;김원철;조양운
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2004년도 춘계학술발표회
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    • pp.552-560
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    • 2004
  • Stone column is a soil improvement method and can be applicable for loose sand or weak cohesive soil. Since the lack of sand in Korea, stone column seems one of the most adaptable approach for poor ground as a soil improvement method. However, this method was not studied for practical application. In this paper, the most effective design parameters for the being capacity of stone column were studied. The parametric study of major design factors for single stone column was carried out under the bulging and general shear failure condition, respectively. Especially, a test result of single stone column by static load was compared with the bearing capacity values of suggested formulas. The analysis result showed that the ultimate bearing capacity by the formula was much less than the measured value by the static load test. Especially, the result of the parametric study under general shear failure condition showed that the bearing capacity has apparent difference between each suggested formulas with the variation of the major design parameters. Therefore, the result of this study can be a suggestion which is applicable for the field test and the future research.

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Research on axial bearing capacity of cold-formed thin-walled steel built-up column with 12-limb-section

  • Wentao Qiao;Yuhuan Wang;Ruifeng Li;Dong Wang;Haiying Zhang
    • Steel and Composite Structures
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    • 제47권3호
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    • pp.437-450
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    • 2023
  • A half open cross section built-up column, namely cold-formed thin-walled steel built-up column with 12-limbsection (CTSBC-12) is put forward. To deeply reveal the mechanical behaviors of CTSBC-12 under axial compression and put forward its calculation formula of axial bearing capacity, based on the previous axial compression experimental research, the finite element analysis (FEA) is conducted on 9 CTSBC-12 specimens, and then the variable parameter analysis is carried out. The results show the FEA is in good agreement with the experimental research, the ultimate bearing capacity error is within 10%. When the slenderness ratio is more than 96.54, the ultimate bearing capacity of CTSBC-12 decreases rapidly, and the failure mode changes from local buckling to global buckling. With the local buckling failure mode unchanged, the ultimate bearing capacity decreases gradually as the ratio of web height to thickness increases. Three methods are used for calculating the ultimate bearing capacity, the direct strength method of AISI S100-2007 gives result of ultimate axial load which is closest to the test and FEA results. But for simplicity and practicality, a simplified axial bearing capacity formula is proposed, which has better calculation accuracy with the slenderness ratio changing from 30 to 100.

Small- and large-scale analysis of bearing capacity and load-settlement behavior of rock-soil slopes reinforced with geogrid-box method

  • Moradi, Gholam;Abdolmaleki, Arvin;Soltani, Parham
    • Geomechanics and Engineering
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    • 제18권3호
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    • pp.315-328
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    • 2019
  • This paper presents an investigation on bearing capacity, load-settlement behavior and safety factor of rock-soil slopes reinforced using geogrid-box method (GBM). To this end, small-scale laboratory studies were carried out to study the load-settlement response of a circular footing resting on unreinforced and reinforced rock-soil slopes. Several parameters including unit weight of rock-soil materials (loose- and dense-packing modes), slope height, location of footing relative to the slope crest, and geogrid tensile strength were studied. A series of finite element analysis were conducted using ABAQUS software to predict the bearing capacity behavior of slopes. Limit equilibrium and finite element analysis were also performed using commercially available software SLIDE and ABAQUS, respectively to calculate the safety factor. It was found that stabilization of rock-soil slopes using GBM significantly improves the bearing capacity and settlement behavior of slopes. It was established that, the displacement contours in the dense-packing mode distribute in a broader and deeper area as compared with the loose-packing mode, which results in higher ultimate bearing load. Moreover, it was found that in the loose-packing mode an increase in the vertical pressure load is accompanied with an increase in the soil settlement, while in the dense-packing mode the load-settlement curves show a pronounced peak. Comparison of bearing capacity ratios for the dense- and loose-packing modes demonstrated that the maximum benefit of GBM is achieved for rock-soil slopes in loose-packing mode. It was also found that by increasing the slope height, both the initial stiffness and the bearing load decreases. The results indicated a significant increase in the ultimate bearing load as the distance of the footing to the slope crest increases. For all the cases, a good agreement between the laboratory and numerical results was observed.

근사적인 해석법에 의한 근입된 벽체의 극한지지력 평가 (Assessment of Ultimate Bearing Capacity for an Embedded Wall by Closed-Form Analytical Solution)

  • 이용주
    • 한국지반공학회논문집
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    • 제22권9호
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    • pp.23-36
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    • 2006
  • 본 연구는 사질토 지반에 근입되어 있는 벽체의 극한지지력을 구하기 위해 새로운 근사적인 해석법의 전개과정에 대해 설명한다. 이러한 근사적인 형태의 해석기법은 상계 및 하계법으로 구성되어 있다. 상 하계법으로 계산된 값은 소성영역에서 구해진 2차원 실내벽체모형의 하중재하시험 및 유한요소해석 결과와 비교하였다. 비교 결과, 모형실험과 유한요소해석으로부터 구한 극한하중 값은 상계와 하계 사이에 모두 분포하는 것으로 나타났다. 이러한 비교에서 특이 할 사항은 하계법으로 구한 벽체의 극한하중이 모형실험 및 유한요소해석에서 구한 극한하중과 잘 일치되는 것을 보여 주었다. 그러나, 평면변형률 조건에서 기존의 경험적인 식에 의한 계산에서 얻어진 극한하중은 하계법의 극한하중에 훨씬 못 미치는 것으로 나타났다.

풍화암 지반에 설치된 소구경말뚝의 거동에 관한 연구 (An Experimental Study on the Behavior of Miscopiles installed in Weathered Weak Rock)

  • 박성재;정경환;이세훈
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 1999년도 가을 학술발표회 논문집
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    • pp.389-396
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    • 1999
  • In this study compressive and tensile load tests have been performed to investigate reinforcing effect and load transfer mechanism of small diameter piles installed in the foundation soil for the marine suspension bridge. Load tests were carried out on steel plate with diameters of 50cm, 100cm and 150cm varying loads starting from 39 tons up to 314 tons. Small diameter piles were proved to behavior like as friction piles and loads were not transmitted to the bottom of piles. From pull-out tests, the uplift capacity of small diameter piles was largely influenced by reinforcing materials compared to frictional resistance between piles and adjacent soils. The bearing capacity of small diameter piles appeared to be higher than the ultimate bearing capacity evaluated using static formulae. The load carrying capacity of small diameter piles was superior to the bored piles with a similar size. Thus, ultimate bearing capacity estimated from static formulae can provide conservative designs and thereby resulting in economic disadvantages. A further study to accumulate data regarding various soil conditions is recommended for an improved estimation of bearing capacity of piles with small diameter.

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철도노반 침하저감을 위한 토목섬유 감쌈 쇄석말뚝 설계방안 고찰 (A Study on Design Method of Geogrid Encased Stone Colum for Settlement Reduction in Railroad)

  • 이대영
    • 한국지반신소재학회논문집
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    • 제13권3호
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    • pp.31-38
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    • 2014
  • 지오그리드 감쌈 쇄석말뚝 공법은 지오그리드의 인장구속효과로 인해 연약지반에 시공된 쇄석말뚝의 지지력을 증가시켜주는 공법이다. 본 연구에서는 토목섬유 감쌈 쇄석말뚝(GESC)공법의 설계에 적용할 수 있는 토목섬유 인장저항력과 극한지지력을 산정할 수 있는 합리적인 설계법을 제안하였다. 제안된 설계방법의 적적성을 평가하기 위해 부산 경전선 연약지반 시험시공 결과로부터 산출된 GESC의 극한지지력과 설계법에의해 산정된 극한지지력을 비교 검증하였다. 연구결과 GESC 설계법에 의해 산정된 지지력이 현장시험의 지지력 보다 크게 나타나는 것으로 검토되었다.

단말뚝 거동에 관한 원심모형실험 (Centrifuge Model Experiments on Behaviors of Single Pile)

  • 유남재;이명욱;이종호
    • 산업기술연구
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    • 제17권
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    • pp.111-118
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    • 1997
  • This thesis is an experimental research of investigating behavior of single pile, subjected to the vertical compression loads, using the centrifuge facility located in the geotechnical engineering laboratory in Kangwon National University. Centrifugal model experiments of model pile were carried out changing diameter of model pile, relative density of sandy ground and the gravitational level applied in the centrifuge. Thus, their effects on the load-settlement behavior and the ultimate bearing capacity of pile were investigated. Experimental results obtained from centrifuge model tests were compared with the theoretical or semi-empirical equations to analyze values of ultimate bearing capacity of model pile. When we compare the ultimate bearing capacity of experimental results with the ultimate bearing capacity of theorical results, the experimental results appear more higher in the De Beer method and Meyerhof. Expecially, Terzaghi method is very same as the experimental results normally.

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Decrease trends of ultimate loads of eccentrically loaded model strip footings close to a slope

  • Cure, Evrim;Sadoglu, Erol;Turker, Emel;Uzuner, Bayram Ali
    • Geomechanics and Engineering
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    • 제6권5호
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    • pp.469-485
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    • 2014
  • A series of bearing capacity tests was conducted with eccentrically loaded model surface and shallow strip footings resting close to a slope to investigate behavior of such footings (ultimate loads, failure surfaces, load-displacement curves, rotation of footing, etc.). Ultimate loads of footing close to slope decreased with increasing eccentricity for both surface and shallow footings. Failure surfaces were not symmetrical, primary failure surfaces occurred on the eccentricity side (the slope side) and secondary failure surfaces occurred on the other side. Lengths of failure surfaces decreased with increasing eccentricity. Footings always rotated towards eccentricity side a few degrees. For eccentrically loaded footing, decrease in ultimate load with increasing eccentricity is roughly in agreement with Customary Analysis.