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Discussion on Design Theory on Joint Use of Pile and Soil-nailing or Retaining Walls |
JIANG Chu-sheng, ZHAO Xiao-yan, LI Qing-hai, HE Gang |
China Railway Eryuan Engineering Group Co. Ltd. , Chengdu, Sichuan 610031, China |
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Abstract Research purposes:The design and calculation method are unsatisfactory for joint use of the pre-reinforcement pile and soil-nailing or retaining walls for reinforcing embankment. Especially there is no a report on the influence of the soil-arch effect on the soil-nailing or retaining wall between piles. Generally, the traditional design of it is made according to the experience without full consideration. Combining the research and experiment for the Nanning-Kunming Railway, this paper discusses this issue in theory and presents the new views on it for providing the reference.
Research conclusions:For forming a soil-arching effect between two piles, the stiffness of the retaining structure between piles must belower to make the soil behind the retaining wall forming a loosing condition for unloading the soil-arch. At this moment, the soil pressure on the pile is different than the retaining wall. Namely, the soil pressure on the pile is bigger than the retaining wall. This loading mode requires no very strong soil-nailing wall and retaining wall between piles. At the same time, as the max arch rise is in the middle of span with no more than 3m and the arch rise near the pile is small, it is proposed the nail length in the middle of span is 3m longer than those on two besides, and the nails length on besides should not be too long.
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Received: 03 July 2009
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[ 1 ] 李海光. 新型支挡结构设计与工程实例[M]. 北京: 人民交通出版社, 2003.
Li Haiguang. Design and Construction Example of New Retaining Structure [M]. Beijing: China Communications Press, 2003.
[ 2] 刘成宇. 土力学[M]. 2 版. 北京: 中国铁道出版社, 2002 .
Liu Chengyu. Soil Mechanics(Second Edition)[M]. Beijing: China Railway Publishing House, 2002 .
[ 3 ] 卢肇钧. 锚定板挡土结构[M]. 1 版. 北京: 中国铁道出版社, 1989.
Lu Zhaojun. Earth-retaining Structure of Anch or Plate (First Edition)[M]. Beijing: China Railway Publishing House, 1989.
[ 4 ] 蒋忠信. 南昆铁路支挡结构主动土压力分布图式[J]. 岩石力学与工程学报, 2005(6): 1035-1040.
Jiang Zhongxin, Distribution Map Forms of Active Earth Pressure on Retaining Structures in Nanning-Kunming Railway[J]. Chinese Journal of Rock Mechanics and Engineering, 2005(6): 1035-1040.
[ 5 ] TB 10025—2001, 铁路路基支挡结构设计规范[S] .
TB 10025—2001, Code for Design on Retaining Structures of Railway Subgrade[S].
[ 6 ] 张建华, 谢强, 张照秀. 抗滑桩结构的土拱效应及其数值模拟 [ J]. 岩石力学与工程学报, 2004(4): 699-703.
Zhang Jianhua, Xie Qiang, Zhang Zhaoxiu. Arching ffect of Anti-slide Pile Structure and Its Numerical Simulation[J]. Chinese Journal of Rock Mechanics and Engineering, 2004(4): 699-703.
[ 7 ] 蒋波, 等. 挡土墙后土体拱效应分析[J]. 浙江大学学报(工学), 2005(1): 131-136.
Jiang Bo, etc. Analysis on Soil Arching Behind Retaining Wall[J]. Journal of Zhejiang University(Engineering Science), 2005(1): 131-136.
[ 8 ] 陈福全, 李阿池, 吕艳萍. 桩承式路堤中土拱效应的改进Hewlett算法[J]. 岩石力学与工程学报, 2007(6): 1278-1283.
Chen Fuquan, Li Achi, Lv Yanping. An Improved Solution of Hewlett's Method for Soil Arching Effect on Piled Embankments[J]. Chinese Journal of Rock Mechanics and Engineering, 2007(6): 1278- 283.
[ 9 ] 熊良宵, 李天斌. 土拱效应在抗滑桩工程中的应用[J]. 防灾减灾工程学报, 2005(3): 275-277.
Xiong Liangxiao, Li Tianbin. Application of Soil Arching Effect to the Anti-sliding Pile Engineering[J]. Journal of Disaster Prevention and Mitigation Engineering, 2005(3): 275-277.
[ 10 ] 贾海莉, 王成华, 李江洪. 基于土拱效应的抗滑桩与护壁桩的桩间距分析 [J]. 西南交通大学学报, 2003(8): 398-402.
Jia Haili, Wang Chenghua, Li Jianghong. Analysis of Pile Spacing be tween Anti-sloding Piles and Petaining Piles in Accordance with Soil Arching Effect[J]. Journal of Southwest Jiaotong University, 2003(8): 398-402.
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