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      현장 계측을 통한 말뚝지지 전면기초의 하중분담률 분석 = Analysis of Load Sharing Ratio of Piled Raft Foundation by Field Measurement

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      https://www.riss.kr/link?id=A103607693

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      다국어 초록 (Multilingual Abstract)

      In this study, field measurements were investigated to analyze the load sharing ratio and behavior of piled raft foundation. The field measurements were performed for about 300 days from the start of construction. The geometry of the raft is $3.1m{\times}3.1m$, and the pre-cast and pre-bored pile is 23 m in length and 0.508 m in diameter. Based on the field measurements, the load-settlement relationship of the piled raft foundation was obtained, and the load sharing ratio of the pile was converged to 70% at ultimate loading condition. The load sharing ratio of the pile increased as the settlement increased, and this is because the surface friction of the weathered soil, which is at the lower ground, was significantly increased. Based on the results of the field measurements, load transfer curves were obtained and applied to a numerical analysis by using load transfer method.
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      In this study, field measurements were investigated to analyze the load sharing ratio and behavior of piled raft foundation. The field measurements were performed for about 300 days from the start of construction. The geometry of the raft is $3.1m{\ti...

      In this study, field measurements were investigated to analyze the load sharing ratio and behavior of piled raft foundation. The field measurements were performed for about 300 days from the start of construction. The geometry of the raft is $3.1m{\times}3.1m$, and the pre-cast and pre-bored pile is 23 m in length and 0.508 m in diameter. Based on the field measurements, the load-settlement relationship of the piled raft foundation was obtained, and the load sharing ratio of the pile was converged to 70% at ultimate loading condition. The load sharing ratio of the pile increased as the settlement increased, and this is because the surface friction of the weathered soil, which is at the lower ground, was significantly increased. Based on the results of the field measurements, load transfer curves were obtained and applied to a numerical analysis by using load transfer method.

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      참고문헌 (Reference)

      1 박동규, "원심모형시험을 통한 Piled Raft 기초의 지지력증가 특성 분석" 한국지반공학회 28 (28): 43-53, 2012

      2 이진형, "연약지반에 시공된 Piled Raft 기초의 3차원 거동 분석" 한국지반공학회 23 (23): 63-75, 2007

      3 김홍택, "사질토 지반에서 연직하중을 받는 Piled Raft 기초시스템의 하중분담특성에 관한 실내모형실험 연구" 대한토목학회 22 (22): 111-120, 2002

      4 권오균, "무리말뚝의 하중분담률에 관한 실험적 연구" 한국지반공학회 21 (21): 51-58, 2005

      5 이승훈, "말뚝지지 전면기초의 설계를 위한 실용적 해석방법에 관한 연구" 한국지반공학회 23 (23): 83-94, 2007

      6 조재연, "말뚝지지 전면기초의 3차원 근사해석기법 개발" 한국지반공학회 28 (28): 67-78, 2012

      7 원진오, "교량 말뚝기초의 캡강성을 고려한 비선형 3차원 해석" 한국지반공학회 21 (21): 19-30, 2005

      8 Lee, J. H., "Three-dimensional Analysis of Bearing Behavior of Piled Raft on Soft Clay" 37 : 103-114, 2010

      9 Ottaviani, M., "Three-Dimensional Finite Element Analysis of Vertically Loaded Pile Groups" 25 : 159-174, 1975

      10 Wang, A., "Three Dimensional Finite Element Analysis of Pile Groups and Piled -raft" University of Manchester 1996

      1 박동규, "원심모형시험을 통한 Piled Raft 기초의 지지력증가 특성 분석" 한국지반공학회 28 (28): 43-53, 2012

      2 이진형, "연약지반에 시공된 Piled Raft 기초의 3차원 거동 분석" 한국지반공학회 23 (23): 63-75, 2007

      3 김홍택, "사질토 지반에서 연직하중을 받는 Piled Raft 기초시스템의 하중분담특성에 관한 실내모형실험 연구" 대한토목학회 22 (22): 111-120, 2002

      4 권오균, "무리말뚝의 하중분담률에 관한 실험적 연구" 한국지반공학회 21 (21): 51-58, 2005

      5 이승훈, "말뚝지지 전면기초의 설계를 위한 실용적 해석방법에 관한 연구" 한국지반공학회 23 (23): 83-94, 2007

      6 조재연, "말뚝지지 전면기초의 3차원 근사해석기법 개발" 한국지반공학회 28 (28): 67-78, 2012

      7 원진오, "교량 말뚝기초의 캡강성을 고려한 비선형 3차원 해석" 한국지반공학회 21 (21): 19-30, 2005

      8 Lee, J. H., "Three-dimensional Analysis of Bearing Behavior of Piled Raft on Soft Clay" 37 : 103-114, 2010

      9 Ottaviani, M., "Three-Dimensional Finite Element Analysis of Vertically Loaded Pile Groups" 25 : 159-174, 1975

      10 Wang, A., "Three Dimensional Finite Element Analysis of Pile Groups and Piled -raft" University of Manchester 1996

      11 Brown, P. T., "The Behaviour of Uniformly Loaded Piled Strip Footings" 15 (15): 13-21, 1975

      12 Hain, S. J., "The Analysis of Flexible Raftpile Systems" 28 (28): 65-83, 1978

      13 Cooke, R. W., "Some Observations of the Foundation Loading and Settlement of a Multi-storey Building on a Piled Raft Foundation in London Clay" 70 : 433-460, 1981

      14 Jeong, S. S., "Slip Effect at the Pile-soil Interface on Dragload" 31 : 115-126, 2004

      15 Yamashita, K., "Settlement Behaviour of a Five Storey Building on a Piled Raft Foundation" 351-356, 1993

      16 Hooper, J. A., "Review of Behaviour of Piled Raft Foundations" CIRIA 1979

      17 Reul, O., "Piled Rafts in Overconsolidated Clay-Comparison of In-situ Measurements and Numerical Analyses" 53 (53): 301-315, 2003

      18 Poulos, H. G., "Piled Raft Foundations: Design and Applications" 51 : 95-113, 2001

      19 Mandolini, A., "Piled Foundations:Experimental I Nvestigations, Analysis and Design" 1 : 177-213, 2005

      20 Chow, Y. K., "Pile-Cap-Pile-Group Interaction in Nonhomogeneous Soil" 117 (117): 1655-1668, 1991

      21 de Sanctis, L., "On the Ultimate Vertical Load of Piled Rafts on the Soft Clay Soils" 379-386, 2003

      22 Won, J. O., "Nonlinear Three-dimensional Analysis of Pile Group Supported Columns Considering Pile Cap Flexibility" 33 : 355-370, 2006

      23 Sommer, H., "Messe Turm, Foundations for the Tallest Building in Europe" 139-145, 1991

      24 Roh, Y. H., "Load Carrying Behavior of Piled Rafts with Varying Ground Water Level and Bed Rock Inclination" Yonsei university 2017

      25 Zhang, G. M., "Interactive Analysis of Behaviour of Raft-pile Foundations" 759-764, 1991

      26 Jendeby, L., "Friction Piled Foundations in Soft Clay. A Study of Load Transfer and Settlements" Chalmers University of Tech 1986

      27 Randolph, M. F., "Design of Piled Foundations" Cambridge University Engineering Department 1983

      28 Katzenbach, R., "Design applications of raft foundations" Thomas Telford 323-392, 2000

      29 Randolph, M. F., "Design Methods for Pile Groups and Piled Rafts" 5 : 61-82, 1994

      30 Horikoshi, K., "Centrifuge Modelling of Piled Raft Foundations on Clay" 47 (47): 741-752, 1996

      31 Burland, J. B., "Behaviour of Founadations and Structure" 2 : 495-549, 1977

      32 Katzenbach, R., "Assessing Settlement of High-rise Structures by 3D Simulations" 2005

      33 Poulos, H. G., "Analysis of Piled Strip Foundations" 183-191, 1991

      34 Lee, I. K., "Analysis and Performance of Raft and Raft-pile Foundations in a Homogeneous Soil" 1993

      35 Kuwabara, F., "An Elastic Analysis for Piled Raft Foundations in a Homogeneous Soil" 28 (28): 82-92, 1989

      36 Poulos, H. G., "An Approximate Numerical Analysis of Pile-raft Interaction" 18 (18): 73-92, 1994

      37 Clancy, P., "An Approximate Analysis Procedure for Piled Raft Foundations" 17 (17): 849-869, 1993

      38 Kitiyodom, P., "A Simplified Analysis Method for Piled Raft Found Ations in Non-homogeneous Soils" 27 : 85-109, 2003

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