• 全国中文核心期刊
  • 中国科技核心期刊
  • 美国工程索引(EI)收录期刊
  • Scopus数据库收录期刊

修正惯用法中弯曲刚度有效率的影响因素分析及计算方法

彭益成, 丁文其, 闫治国, 黄星程, 肖冰峰

彭益成, 丁文其, 闫治国, 黄星程, 肖冰峰. 修正惯用法中弯曲刚度有效率的影响因素分析及计算方法[J]. 岩土工程学报, 2013, 35(zk1): 495-500.
引用本文: 彭益成, 丁文其, 闫治国, 黄星程, 肖冰峰. 修正惯用法中弯曲刚度有效率的影响因素分析及计算方法[J]. 岩土工程学报, 2013, 35(zk1): 495-500.
PENG Yi-cheng, DING Wen-qi, YAN Zhi-guo, HUANG Xing-cheng, XIAO Bing-feng. Analysis and calculation method of effective bending rigidity ratio in modified routine method[J]. Chinese Journal of Geotechnical Engineering, 2013, 35(zk1): 495-500.
Citation: PENG Yi-cheng, DING Wen-qi, YAN Zhi-guo, HUANG Xing-cheng, XIAO Bing-feng. Analysis and calculation method of effective bending rigidity ratio in modified routine method[J]. Chinese Journal of Geotechnical Engineering, 2013, 35(zk1): 495-500.

修正惯用法中弯曲刚度有效率的影响因素分析及计算方法  English Version

基金项目: 教育部创新团队发展计划(IRT1029);上海城建集团科研项目(No. 沪城建科2010-A-1a资助)
详细信息
    作者简介:

    彭益成(1984- ),男,浙江杭州人,博士研究生,主要从事盾构隧道结构计算方法和数值模拟研究。E-mail: peng_yicheng@163.com。

  • 中图分类号: TU451

Analysis and calculation method of effective bending rigidity ratio in modified routine method

  • 摘要: 修正惯用法作为一种实用的设计计算方法被广泛应用于盾构隧道结构设计领域。其关键参数——弯曲刚度有效率η的取值对于计算结果具有至关重要的影响。本文基于荷载结构法,采用有限元方法建立带接头和不带接头的衬砌管片圆环模型。根据弯曲刚度有效率的定义,分析了接头数量、接头角度、接头抗弯刚度和地基抗力系数对于弯曲刚度有效率的影响。研究表明当接头数量较少,接头刚度较大和地基抗力较大时,弯曲刚度有效率较大。同时,不同的接头角度对于弯曲刚度有效率也存在明显影响。根据数值模拟结果,给出了盾构隧道结构的弯曲刚度有效率计算方法。该方法综合考虑接头数量、接头角度、接头抗弯刚度和地基抗力系数对弯曲刚度有效率的影响。一系列计算对比验证了该计算公式具有较广的适用性和较高的准确性。
    Abstract: As a practical calculation method for the lining structure of shield tunnels, the modified routine method has been widely applied during its design. The key parameter, the effective bending rigidity ratio η, is essential for the calculated results. The numerical models for segmental rings with and without joints are established using the load structure method. Based on the results of the FEM analysis, the influences of number, distribution and bending stiffness of joints and soil resistance coefficient on the effective bending rigidity ratio are examined. The study indicates that the effective bending rigidity ratio increases when the number of joints decreases or the bending stiffness of joints and the soil resistance coefficient increase. In addition, the distribution of joints has appreciable impact on the effective bending rigidity ratio. A method for evaluating the effective bending rigidity ratio of shield tunnel structures is proposed. The effects of number, distribution and bending stiffness of joints and soil resistance coefficient are considered. Through comparisons, the proposed method is proved to be practical and accurate.
  • 刘建航,侯学渊. 盾构隧道[M].北京:中国铁道出版社, 1991.(LIU Jian-hang,HOU Xue-yuan. Shield-driven tunnels[M].Beijing:China Railway Press, 1991. (in Chinese))
    Japanese Society of Civil Engineers. The design and construction of underground structures[R]. Tokyo: Japanese Society of Civil Engineers, 1977.
    KOYAMA Y,NISHIMURA T. Design of lining segment of shield tunnel using a beam-spring model[J]. Quarterly Report of RTRI (Railway Technical Research Institute, Japan), 1998, 39(1): 23-27.
    日本土木学会. 日本土木学会隧道标准规范(盾构篇)及解说[M]. 朱伟, 译.北京:中国建筑工业出版社, 2001.(Japan Society of Civil Engineers. Japanese Standard for Shield Tunneling[M]. ZHU Wei, translator.Beijing:China Construction Industry Press, 2001. (in Chinese))
    UCHIDA K. Design and engineering of large bore slurry shield tunnel lining system for Trans-Tokyo Bay Highway[J]. Civil Engineering in Japan, 1992, 30: 54-67.
    MUIR Wood A M. The circular tunnel in elastic ground[J]. Géotechnique, 1975, 25(1): 115-127.
    LEE K M,GE X W. The equivalence of a jointed shield-driven tunnel lining to a continuous ring structure[J]. Can Geotech J, 2001, 38: 461-483.
    钟小春,朱 伟,季亚平,等. 盾构衬砌管片环弯曲刚度有效率的一种确定方法[J]. (地质与勘探), 2003, 39(增刊): 185-189.(ZHONG Xiao-chun,ZHU Wei,JI Ya-ping,et al. The method to confirm the effective bending stiffness of shield-driven tunnel lining[J]. Geology and Prospecting, 2003, 39(S): 185-189. (in Chinese))
    黄正荣,朱 伟,梁精华. 修正惯用法管片弯曲刚度有效率和弯矩提高率的研究[J]. (工业建筑), 2006, 36(2): 45-49.(HUANG Zheng-rong,ZHU Wei,LIANG Jing-hua. Study on effective bending rigidity ratios and moment increasing rates in modified routine method[J]. Industrial Construction, 2006, 36(2): 45-49. (in Chinese))
    SUPOT Teachavorasinskun. Tanan Chub-uppakarn. Influence of segmental joints on tunnel lining[J]. Tunnelling and Underground Space, 2010, 25: 490-494.
    刘建航,侯学渊. 基坑工程手册[M].北京:中国建筑工业出版社, 1997.(LIU Jian-hang,HOU Xue-yuan. Excavation engineering handbook[M].Beijing:China Construction Industry Press, 1997. (in Chinese))
    张厚美,过 迟,付德明. 圆形隧道装配式衬砌接头刚度模型研究[J]. (岩土工程学报), 2000(3): 309-313.(ZHANG Hou-mei,GUO Chi,FU De-ming. A study on the stiffness model of circular tunnel prefabricated lining[J]. Chinese Journal of Geotechnical Engineering, 2000(3): 309-313. (in Chinese))
    曾东洋,何 川. 地铁盾构隧道管片接头抗弯刚度的数值计算[J]. (西南交通大学学报), 2004(6): 744-748.(ZENG Dong-yang,HE Chuan. Numerical simulation of segment joint bending stiffness of metro shield tunnel[J]. Journal of Southwest Jiaotong University, 2004(6): 744-748. (in Chinese))
    徐 凌. 软土盾构隧道纵向沉降研究[D]. 上海: 同济大学, 2005.(XU Ling. Study on longitudinal settelment of shield tunnel in soft soil[D]. Shanghai: Tongji University, 2005. (in Chinese))
    唐志成,何 川,林 刚. 地铁盾构隧道管片结构力学行为模型试验研究[J]. (岩土工程学报), 2005(1): 85-89.(TANG Zhi-cheng,HE Chuan,LIN Gang. Study on mechanical behavior of segment of shield tunnel of metro with model test[J]. Chinese Journal of Geotechnical Engineering, 2005(1): 85-89. (in Chinese))
计量
  • 文章访问数: 
  • HTML全文浏览量:  0
  • PDF下载量: 
  • 被引次数: 0
出版历程
  • 收稿日期:  2013-03-01
  • 发布日期:  2013-07-18

目录

    /

    返回文章
    返回