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      • KCI등재

        긴장력이 도입된 중공형 콘크리트 충전 강관말뚝의 휨강도 산정

        백규호 한국지반공학회 2019 한국지반공학회논문집 Vol.35 No.12

        Hollow prestressed concrete-filled steel tube (HCFT) piles, which combines PHC piles inside thin-wall steel tubes, were developed to increase the flexural strength of the pile with respect to the lateral load. Since P-M curves are needed for evaluating the structural safety of piles when applying HCFT piles to fields, equations for plotting P-M curves of HCFT piles in limit states were proposed. When the yield strength is applied to the steel tube and PC steel bar of HCFT piles, the proposed equations significantly underestimated the flexural strength of HCFT piles. Unlike the flexural strength test results, the proposed equations also provide greater flexural strengths for 12 mm thick steel pipe piles with the same diameter than for HCFT piles. However, when the ultimate strengths are used instead of the yield strengths for the steel tube and PC steel bar, the proposed equations provide the flexural strengths very close to the flexural strength test results. 수평하중에 대한 휨강성을 증대시키기 위해 얇은 두께의 강관 내부에 PHC말뚝을 합성한 중공형 콘크리트 충전 강관(HCFT)말뚝을 개발하였고, HCFT말뚝의 현장 적용 시 말뚝의 구조안전성 평가에 필요한 한계상태에서 P-M 상관도를 작도할 수 있는 산정식을 제안하였다. HCFT말뚝을 구성하는 강관과 PC강봉에 대한 강도 값으로 항복응력을 적용할 경우 제안식은 HCFT말뚝의 극한휨내력을 큰 폭으로 과소평가하였고, 축력이 작용하지 않을 때 휨강도시험 결과와 달리 HCFT말뚝보다 직경이 동일하고 두께가 12mm인 강관말뚝의 극한휨내력을 더 크게 산정하였다. 그러나 HCFT말뚝을 구성하는 강관과 PC강봉에 대해 항복강도인 대신 극한강도인 를 사용하면 제안식은 휨강도시험 측정결과에 매우 근접한 극한휨내력을 제공하는 것으로 나타났다.

      • KCI등재

        모래지반에서 비배토 테이퍼말뚝의 연직거동 특성

        백규호,이준환,김대홍 한국지반공학회 2007 한국지반공학회논문집 Vol.23 No.8

        It is known that the response of piles is affected by the shape of pile as well as soil conditions. In order to investigate the characteristics of the axial responses and bearing capacities of non-displacement tapered and cylindrical piles in sands, 12 model pile load tests using a calibration chamber were conducted on model tapered and cylindrical piles, which were specially manufactured to measure the base and shaft load capacities independently. Results of the model tests showed that the shaft load of tapered piles continuously increased with pile settlement, whereas the shaft load of cylindrical piles reached ultimate values at a settlement equal to 4% of pile diameter. Therefore, taper piles have greater shaft loads than cylindrical one at the same settlement. It is also observed that the total load capacity of tapered piles is lower than cylindrical piles for dense sand but is greater than that of cylindrical piles for medium sand. The ultimate unit base resistance of tapered piles was greater than that of cylindrical piles for lateral earth pressure ratio greater than 0.4, and the shaft resistance was greater than that of cylindrical piles irrespective of lateral earth pressure ratio.

      • 버팀굴착시 버팀대 선행하중의 인접지반 변위억제 효과

        白圭浩 관동대학교 1999 關大論文集 Vol.27 No.2

        The bracing system using screw jack is not effective for the restraining of adjacent ground displacement. since the screw jack dose not induce sufficient preload on struts. In order to protect excessive displacement of adjacent ground at braced excavation. new preloading jack was developed in the country. In this paper. the new preloading jack and the measurement results of the lateral displacement of braced wall at three deep excavation sites in Seoul city are introduced. The measurement results showed that the maximum displacements of braced wall are smaller than 0.15% of excavation depth. therefore the wall displacements can be minimized. by preload which is acted on bracing If the bracing system with new preloading jack is used. in braced excavation. it is effective for reducing the cost and period of construction.

      • 과긴장을 필요치 않는 새로운 앵커시스템의 개발

        白圭浩 관동대학교 2000 關大論文集 Vol.28 No.2

        When deep and large excavations are performed in urban area. a anchor is used to protect excessive displacement of earth retaining wall. The displacement of retaining wall is affected by the magnitude of anchor force. In general. the anchor induced in strand depends not only on the magnitude of stressing force applied to the strand. by oil jack but also on several factors such as setting of wedge. relaxation of strand. ground deformation by stressing force. and creep between soil and grout or grout and strand. However, the substantial abchor force is generally less than design anchor force. because the anchor is commonly installed by free setting method in which anchor force is reduced due to several factors mentioned above. Therefore, in most instance. the displacements of anchored earth retaining wall is larger than calculated displacement. In this study the new anchor system which can precisely control the anchor force is developed. The new anchor system developed in this research will contribute to more accurate installation of anchor and reduction of wall displacement in anchored earth retaining wall.

      • KCI등재

        모래지반에서 반복수평하중을 받는 말뚝의 영구변형

        백규호,박원우 한국지반공학회 2010 한국지반공학회논문집 Vol.26 No.11

        Monopiles, used as one foundation option for offshore wind turbines, are usually subjected to great cyclic lateral loads due to wind and wave. In this study, model pile load tests were performed using calibration chamber and three model piles with different pile lengths in order to investigate the behavior of laterally cyclic loaded piles driven into sand. Model test results show that the first loading cycle generates a bigger displacement than the following ones, and the permanent displacement of piles by one loading cycle decreases with increasing the number of cycles. 1-way cyclic loading causes the permanent displacement in the same direction as cyclic loading, whereas 2-way cyclic loading causes the permanent displacement in the reverse direction of initial loading. It is also observed that the permanent displacement of piles due to cyclic lateral loads increases with decreasing relative density of soil and with increasing the magnitude of cyclic loads. However, it is insensitive to the earth pressure ratio of soil and embedded pile length. In addition, based on the model pile load test results, equations for estimation of the permanent lateral displacement and rotation angle of piles due to 1-way cyclic lateral loads are proposed.

      • KCI등재

        형상계수를 이용한 사질토 지반에 타설된 테이퍼말뚝의 지지력 산정

        백규호,이준환 한국지반공학회 2008 한국지반공학회논문집 Vol.24 No.12

        Fourteen calibration chamber tests were performed using one cylindrical and two tapered piles with different taper angles to investigate the changes of the bearing capacity of tapered piles with soil state and taper angle of piles. The results of calibration chamber tests show that the ultimate base resistance of tapered piles increases with increasing mean stress and relative density of soil. It also increases with increasing taper angle for medium sand, but with decreasing taper angle for dense sand. The ultimate shaft resistance of tapered piles increases as vertical and horizontal stresses, relative density and taper angle increase. Based on the results of model pile load tests, a new design method with shape factors for estimation of the bearing capacity of tapered piles is proposed considering the effect of soil state and taper angle on bearing capacity of tapered piles. In order to check the accuracy of predictions calculated using the new method, middle-scale field pile load tests were also conducted on cylindrical and tapered drilled shafts in clayey sand. Comparison of calculated values with measured ones shows that the new design method produces satisfactory predictions for tapered piles.

      • KCI등재

        모래지반에서 말뚝형태를 고려한 비배토말뚝의 지지력 산정

        백규호,이준환,김대홍 한국지반공학회 2007 한국지반공학회논문집 Vol.23 No.5

        In order to investigate the effect of the pile shape on the bearing capacity of non-displacement piles, a series of model pile load tests were performed using a calibration chamber and three model piles with different shape. Results of the model tests showed that the bearing capacity of tapered piles was affected by its taper angle as well as the stress states and relative density of soil. Based on the results of model pile load tests, a new design equation for estimation of the bearing capacity of non-displacement piles was proposed, and it takes into account the effect of the taper angles on the bearing capacity of non-displacement piles.

      • KCI등재

        무용접 장대강관말뚝 공법의 항타 및 지지력 특성

        백규호 한국지반공학회 2000 한국지반공학회논문집 Vol.16 No.1

        기존의 장대강관말뚝 공법들은 말뚝의 용접이음이나 관내토의 제거 작업으로 인하여 공비와 공기가 증가하고 이들 작업이 진행되는 동안 시간효과에 의하여 말뚝의 관입 저항이 증가하여 타입이 어려워지는 등 각종 비경제적인 문제점들을 갖고 있다. 이러한 문제들을 해결하기 위하여 본 연구에서는 새로운 장대강관말뚝 공법을 제안하였으며, 제안된 공법의 시공성과 경제성을 분석하기 위하여 모형말뚝시험을 행하였다. 시험결과 새로 제안된 장대말뚝공법은 기존 공법에 비해 공기와 공비는 절감되고 지지력은 증가시키는 것으로 나타났다. The existing methods for installation of long steel pipe pile have some uneconomical problems such as increase of installation cost and period due to the welding of two piles and removal of soil plug, and decrease of driving efficiency due to the increase of driving resistance resulting from time effect during the welding of piles and removal of soil plug, etc. Thus, in this study, new installation method for long steel pipe pile is suggested to solve the existing problems, and calibration chamber tests were performed to investigate both driving and economical efficiency for the suggested method. The test results showed that the new method increased bearing capacity, and decreased the installation cost and period for long steel pipe piles compared with existing methods.

      • KCI등재
      • KCI등재

        모래지반에서 말뚝의 항타에너지가 강관말뚝의 지지력에 미치는 영향

        백규호 한국지반공학회 2001 한국지반공학회논문집 Vol.17 No.6

        개단 강관말뚝은 관입저항이 상대적으로 작다는 장점 때문에 육상과 해상구조물의 기초로 널리 사용되고 있다. 본 연구에서는 말뚝의 항타에너지가 강관말뚝의 폐색효과와 지지력에 미치는 영향을 알아보기 위하여 토조를 이용한 모형말뚝시험을 수행하였다. 시험결과로부터 말뚝의 폐색정도는 동일 항타에너지에서 햄머의 중량이 클수록, 그리고 동일 낙하높이에 대해서도 햄머의 중량이 클수록 증가하는 것을 알 수 있었다. 또한 폐색정도의 경우와 마찬가지로 항타에너지가 일정한 경우와 햄머의 낙하높이가 일정한 경우 모두에 대하여 햄머의 중량이 증가할수록 말뚝의 선단지 지력과 주면마찰력이 증가하는 것으로 나타났다. 한편 압입말뚝(jacked pile)의 경우에는 말뚝의 설치과정에서 발생하는 폐색효과가 동일 깊이로 타입된 항타말뚝에 비해 상당히 크게 나타났으며, 그로 인해 지지력 또한 항타말뚝 보다 큰 것으로 나타났다. Open-ended pipe piles are often used for the foundations of both land and offshore structures because of their relatively low driving resistance. In this study, load tests were performed on model pipe piles installed in calibration chamber samples in order to investigate the effects of pile installation method on soil plugging and bearing capacity. Results of the test program showed that the incremental filling ratio (IFR), which is used to indicate the degree of soil plugging in open-ended piles, decreased (i) with increasing hammer weight for the same driving energy and (ii) with increasing hammer weight at the same fall height. The base and shaft resistance of the piles were observed to increase (i) with increasing hammer weight for the same driving energy and (ii) with increasing hammer weight at the given same fa11 height. The jacked pile was found to be have higher bearing capacity than an identical driven pile under similar conditions, mostly due to the more effective development of a soil plug in jacking than in driving.

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