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    현장타설말뚝을 적용한 다주식 기초에서 말뚝과 캡의 강결합에 대한 분석 = Analysis on the Rigid Connections of the Drilled Shaft with the Cap for Multiple Pile Foundations

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    https://www.riss.kr/link?id=A104663617

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    Piles of a bridge pier are connected with the column through the pile cap (footing). Behavior of the pile foundation can be different according to the connection method between piles and the pile cap. Connection methods between pile heads and the pile cap are divided into two groups : rigid connections and hinge connections. Domestic design code has been specified to use rigid connection method for the highway bridge. In the rigid connection method, maximum bending moment of a pile occurs at the pile head and this helps the pile to prevent the excessive displacement. Rigid methods are also good to improve the seismic performance. However, some specifications prescribe that conservative results through investigations of both the fixed-head condition and the free-head condition should be reflected in the design. This statement may induce an over-estimated design for the bridge which has high-quality structures with casing covered drilled shafts and the PC-house contained pile cap. Because the assumption of free-head conditions (hinge connections) is unreal for the elevated pile cap system with multiple piles of the long span sea-crossing bridges. On the other hand, elastic displacement method to evaluate the pile reactions under the pile cap is not suitable for this type of bridges due to impractical assumptions. So, full modeling techniques which analyze the superstructure and the substructure simultaneously should be performed. Loads and stress state of the large diameter drilled shaft and the pile cap for Incheon Bridge which will be the longest bridge of Korea were investigated through the full modeling for rigid connection conditions.
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    Piles of a bridge pier are connected with the column through the pile cap (footing). Behavior of the pile foundation can be different according to the connection method between piles and the pile cap. Connection methods between pile heads and the pile...

    Piles of a bridge pier are connected with the column through the pile cap (footing). Behavior of the pile foundation can be different according to the connection method between piles and the pile cap. Connection methods between pile heads and the pile cap are divided into two groups : rigid connections and hinge connections. Domestic design code has been specified to use rigid connection method for the highway bridge. In the rigid connection method, maximum bending moment of a pile occurs at the pile head and this helps the pile to prevent the excessive displacement. Rigid methods are also good to improve the seismic performance. However, some specifications prescribe that conservative results through investigations of both the fixed-head condition and the free-head condition should be reflected in the design. This statement may induce an over-estimated design for the bridge which has high-quality structures with casing covered drilled shafts and the PC-house contained pile cap. Because the assumption of free-head conditions (hinge connections) is unreal for the elevated pile cap system with multiple piles of the long span sea-crossing bridges. On the other hand, elastic displacement method to evaluate the pile reactions under the pile cap is not suitable for this type of bridges due to impractical assumptions. So, full modeling techniques which analyze the superstructure and the substructure simultaneously should be performed. Loads and stress state of the large diameter drilled shaft and the pile cap for Incheon Bridge which will be the longest bridge of Korea were investigated through the full modeling for rigid connection conditions.

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    참고문헌 (Reference)

    1 대한토목학회, "도로교설계기준 해설 : 하부구조편"

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

    3 원진오, "교량 말뚝기초 해석기법의 적용성 분석" 한국지반공학회 21 (21): 123-134, 2005

    4 鐵道綜合技術硏究所, "鐵道構造物等設計標準・同解說:基礎構造物・抗土壓構造物, 運輸省鐵道局 監修"

    5 日本道路協會, "道路橋示方書・同解說"

    6 玉野治光, "變位が制限される基礎の設計について"

    7 浅間達雄, "杭頭部べ초および合理的水平變位量を考慮した杭基礎設計法, 土木硏究所資料第1715号"

    8 日本道路協會, "杭基礎 設計便覽"

    9 Yang, Zhaohui, "Numerical study of group effects for pile groups in sands" 27 (27): 1255-1276, 2003

    10 Hoit, M.I., "Nonlinear Pile Foundation Analysis using Florida-Pier" 1 (1): 135-142, 1996

    1 대한토목학회, "도로교설계기준 해설 : 하부구조편"

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

    3 원진오, "교량 말뚝기초 해석기법의 적용성 분석" 한국지반공학회 21 (21): 123-134, 2005

    4 鐵道綜合技術硏究所, "鐵道構造物等設計標準・同解說:基礎構造物・抗土壓構造物, 運輸省鐵道局 監修"

    5 日本道路協會, "道路橋示方書・同解說"

    6 玉野治光, "變位が制限される基礎の設計について"

    7 浅間達雄, "杭頭部べ초および合理的水平變位量を考慮した杭基礎設計法, 土木硏究所資料第1715号"

    8 日本道路協會, "杭基礎 設計便覽"

    9 Yang, Zhaohui, "Numerical study of group effects for pile groups in sands" 27 (27): 1255-1276, 2003

    10 Hoit, M.I., "Nonlinear Pile Foundation Analysis using Florida-Pier" 1 (1): 135-142, 1996

    11 AISC, "Load and Resistance Factor Design : LRFD Specification for Structural Steel Buildings and Commentary" American Institute of Steel Construction 1999

    12 AASHTO, "LRFD Bridge Design Specifications : 3rd Ed." AASHTO, Washington DC .(5)136-, 2004

    13 FHWA, "Drilled Shaft ; Construction Procedures and Design Method"

    14 Reese, L.C., "Analysis of a Group Piles Subjected to Axial and Lateral Loading" Ensoft Inc. 2004

    15 정상섬, "Analysis of Pile Cap Interaction by Load Transfer Approach" 17 (17): 95-102, 2001

    16 Zhang H.H., "Analysis of Capped Pile Groups Subjected to Horizontal and Vertical Loads" 26 : 1-21, 2000

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    2020-01-01 등재 등재학술지 유지 (재인증) KCI등재
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