Bearing behavior and simplified calculation method of all-vertical-piled wharf in offshore deep water
WANG Yuan-zhan1, 2, LONG Yu-chen1, 2, WANG Yu-chi1, 2, WANG Zhao-yang1, 2
1. Tianjin University State Key Laboratory for Simulation & Safety of Hydraulic Engineering, Tianjin 300072, China; 2. Tianjin Key Laboratory of Harbor & Ocean Engineering, Tianjin 300072, China
Abstract:All-vertical-piled wharf is a new type of high-pile wharf suitable for offshore deep sea. However, its bearing behaviors, failure modes and design and calculation methods are quite different from those of the traditional one. The purpose of this paper is to carry out researches so as to solve the above problems. By use of the 3D elastoplastic finite element model for the all-vertical-piled wharf and soil foundation based on ABAQUS, the bearing behaviors and failure modes under horizontal loads are studied. It can be concluded that when the all-vertical-piled wharf in offshore deep water is under the horizontal loads, the plastic failure of pile foundation is the key to the buckling damage, while the bearing capacity of foundation soil is not a decisive factor. After these analyses, a simplified calculation method for the horizontal bearing capacity is established based on P-Ycurves. The internal force and deformation at any position of piles can be calculated by means of this method. Moreover, the simplified method is suitable for both large and small displacements. The “plastic hinge” is used as the criterion of horizontal bearing capacity in the simplified calculation method. In comparison with the finite element model, the proposed method is proved to be reliable.
王元战, 龙俞辰, 王禹迟, 王朝阳. 离岸深水全直桩码头承载特性与简化计算方法[J]. 岩土工程学报, 2013, 35(9): 1573-1579.
WANG Yuan-zhan, LONG Yu-chen, WANG Yu-chi, WANG Zhao-yang. Bearing behavior and simplified calculation method of all-vertical-piled wharf in offshore deep water. Chinese J. Geot. Eng., 2013, 35(9): 1573-1579.
[1] 张志明, 何良德, 李新国. 在水平静力作用下全直桩码头结构整体简化计算方法[J]. 中国港湾建设, 2011(5): 1-6. (ZHANG Zhi-ming, HE Liang-de, LI Xin-guo. Simplified overall calculation method of all-vertical-piled wharf under lateral static loads [J]. China Harbour Engineering, 2011(5): 1-6. (in Chinese)) [2] 宗 泽. 离岸深水码头全直桩结构分析[D]. 南京: 河海大学, 2007. (ZONG Ze. Analysis of all-vertical-piled wharf[D]. Nanjing: Hohai University, 2007. (in Chinese)) [3] 沈建霞, 钱祖宾. 全直桩基础水平承载能力影响因素探讨[J]. 水运工程, 2012(4): 166-170. (SHEN Jian-xia, QIAN Zu-bin. Influential factors of horizontal bearing capacity of whole vertical piles[J]. Port & Waterway Engineering, 2012(4): 166-170. (in Chinese)) [4] 刘晓平, 凌 威, 林积大. 底梁式全直桩高桩码头水平力作用下的特性分析[J]. 中国港湾建设, 2012(2): 13-14. (LIU Xiao-ping, LING Wei, LIN Ji-da. Characteristic analysis on all-vertical-piled and mudsill wharf under horizontal force[J]. China Harbour Engineering, 2012(2): 13-14. (in Chinese)) [5] 张志明. 求解水平力作用下全直桩码头排架内力和变位的一种较精确方法[J]. 水运工程, 1993(11): 14-18. (ZHANG Zhi-ming. A more accurate method to solve internal force and displacement of all-vertical-piled wharf under horizontal force[J]. Port&Waterway Engineering, 1993(11): 14-18. (in Chinese)) [6] 肖 政, 韩时琳. 基于地基系数折减法的全直桩高桩排架计算[J]. 水运工程, 2007(3): 44-47. (XIAO Zheng, HAN Shi-lin. Calculation of pile bent with all straight piles based on degradation model of subgrade reaction[J]. Port & Waterway Engineering, 2007(3): 44-47. (in Chinese)) [7] JTJ 254—98 港口工程桩基规范[S]. 北京: 人民交通出版社, 1998. (JTJ254—98 Pile foundation standard in port engineering[S]. Beijing: China Communications Press, 1998. (in Chinese)) [8] 王 刚, 陈 杨. 大圆筒结构倾覆稳定分析的有限元法[J].岩土力学, 2006, 27(2): 238-241. (WANG Gang, CHEN Yang. Finite element method for analyzing overturn stability of large cylindrical structures[J]. Rock and Soil Mechanics, 2006, 27(2): 238-241. (in Chinese)) [9] American Petroleum Institute.Recommended practice for planning I, designing and constructing fixed offshore platforms[M]. Washington D C: API Publishing Services, 2000. [10] 杨国平, 张志明. 对大变位条件下横向受力桩P-Y曲线的研究[J]. 水运工程, 2002(7): 40-71. (YANG Guo-ping, ZHANG Zhi-ming. Research on P-Y curve of laterally bearing piles large displacement[J]. Port & Waterway Engineering, 2002(7): 40-71. (in Chinese)) [11] 章连洋, 陈竹昌. 计算黏性土p-y曲线的方法[J]. 海洋工程, 1992, 10(4): 50-58. (ZHANG Lian-yang, CHEN Zhu-chang. Calculation method for p-y curves of cohesive soil[J]. The Ocean Engineering, 1992, 10(4): 50-58. (in Chinese)) [12] 程泽坤. 基于P-Y曲线法考虑桩土相互作用的高桩结构物分析[J]. 海洋工程, 1998, 16(2): 73-82. (CHENG Ze-kun. Analysis of high-piled structure regarding interaction of pile and soil based on P-Y curves[J]. The Ocean Engineering, 1998, 16(2): 73-82. (in Chinese))