Pit Bearing Capacity Effect on Statu

时间:2021-07-29 18:46:48 天文地理论文 我要投稿
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Pit Bearing Capacity Effect on Status of Soil Plug During Pile Driving in Ocean Engineering

Abstract:Foundation piles of the offshore oil platforms in the Bohai Bay are usually longer than 100 m with a diameter larger than 2 m. Driving such long and large-sized piles into the ground is a difficult task. It needs a comprehensive consider ation of the pile dimensions, soil properties and the hammer energy. Thoughtful drivability analysis has to be performed in the design stage. It has been shown that judging whether the soil column inside the pile is fully plugged, which makes the pile behave as close-ended, strongly influences the accuracy of drivability analysis. Engineering practice repeatedly indicates that the current methods widely used for soil plug judgment often give incorrect results, leading the designers to make a wrong decision. It has been found that this problem is caused by the ignorance of the bearing capacity provided by the soil surrounding the pile. Based on the Terzaghis bearing capacity calculation method for deep foundation, a new approach for judging soil plug status is put forward, in which the surcharge effect has been considered and the dynamic effect coefficient is included. This approach has been applied to some practical engineering projects successfully, which may give more reasonable results than the currently used method does. 作者: Author: YAN Shu-wang  ZHOU Qun-hua  LIU Run  DONG Wei 作者单位: School of Civil Engineering, Tianjin University, Tianjin 300072, China 期 刊: 中国海洋工程(英文版)   ISTICEISCI Journal: CHINA OCEAN ENGINEERING 年,卷(期): 2011, 25(2) 分类号: P752 Keywords: ocean platform pile    pit bearing capacity    plug status    static equilibrium    driveability    机标分类号: P7 TP3 机标关键词: Ocean Engineering    Pile Driving    During    Soil Plug    Bearing Capacity    bearing capacity    soil plug    effect coefficient    calculation method    approach    analysis    deep foundation    current methods    results    influences    practical    Bohai Bay    provided    practice    diameter 基金项目: This research was financially supported by the National Natural Science Foundation of China

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