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拼装式顶管接头抗弯刚度及管节内力计算
引用本文:冯鑫,张鹏,马保松,周浩.拼装式顶管接头抗弯刚度及管节内力计算[J].地质科技通报,2021,40(2):111-117.
作者姓名:冯鑫  张鹏  马保松  周浩
作者单位:中国地质大学(武汉)工程学院;中山大学土木工程学院
基金项目:国家自然科学基金项目52008383
摘    要:随着顶管断面尺寸不断增大,管节的运输问题逐渐突显,拼装式顶管技术可以有效解决该问题。在现有拼装式结构接头基础上,提出了拼装式顶管管节横向接头的连接方式,并以螺栓拼装式管节为研究对象,建立了横向接头抗弯刚度计算模型,结合盾构管片梁-弹簧模型,提出了拼装式管节结构计算方法。其内力计算结果表明:拼装式和整体式管节内力分布规律基本一致;拼装式管节的侧壁弯矩小于整体式管节,顶部和底部弯矩大于整体式管节,二者内力无急剧变化;从内力分布与大小看,拼装式管节是可用的。

关 键 词:拼装式顶管  横向接头  抗弯刚度  梁-弹簧模型
收稿时间:2020-04-22

Joint bending stiffness and internal force calculation of assembled pipe jacking
Feng Xin,Zhang Peng,Ma Baosong,Zhou Hao.Joint bending stiffness and internal force calculation of assembled pipe jacking[J].Bulletin of Geological Science and Technology,2021,40(2):111-117.
Authors:Feng Xin  Zhang Peng  Ma Baosong  Zhou Hao
Institution:(School of Engineering,China University of Geosciences(Wuhan),Wuhan 430074,China;School of Civil Engineering,Sun Yat-sen University,Zhuhai Guangdong 519082,China)
Abstract:With the increasing of the cross section area of pipe jacking, the transportation problem of pipe is becoming more and more serious.And the assembled pipe jacking technology can effectively solve this problem.Based on the existing assembled structural joints, the connection method of the assembled pipe transverse joint is put forward.Then, the bending stiffness model of transverse joint in bolt assembled pipe is established, and the structural calculation method of assembled pipe is put forward with reference to the beam-spring model of shield segment.The results of internal force show that the internal force distribution of assembled and integral pipe is basically the same; the bending moment of the side wall of the assembled pipe is less than that of the integral pipe, while the bending moment at the top and bottom is greater than that of the integral pipe and there is no sharp change in their internal forces; in terms of internal force distribution and value, the assembled pipe is available. 
Keywords:assembled pipe jacking  transverse joint  bending stiffness  beam-spring model
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