• 中国科学引文数据库(CSCD)来源期刊
  • 中文核心期刊中文科技核心期刊
  • Scopus RCCSE中国核心学术期刊
  • 美国EBSCO数据库 俄罗斯《文摘杂志》
  • 《日本科学技术振兴机构数据库(中国)》
二维码

隧道建设(中英文) ›› 2022, Vol. 42 ›› Issue (5): 826-832.DOI: 10.3973/j.issn.2096-4498.2022.05.008

• 研究与探索 • 上一篇    下一篇

基于宾汉姆流体的土压平衡盾构螺旋输送机排土量研究

骆展鹏1, 钟小春2 *, 周智1, 云强1, 章邦超1   

  1. 1. 中铁建华南建设有限公司, 广东 广州 511458 2. 河海大学土木与交通学院, 江苏 南京 210098

  • 出版日期:2022-05-20 发布日期:2022-06-02
  • 作者简介:骆展鹏 (1974—),男,湖北黄冈人,1998年毕业于石家庄铁道学院,交通土建专业,本科,高级工程师,主要从事地铁及地下建设工程研究与管理工作。 E-mail: 497564901@qq.com。*通信作者: 钟小春, E-mail: xchzhong@hhu.edu.cn。

Study of Muck Discharging Volume of Screw Conveyor of Earth Pressure Balance Shield Based on Bingham Fluid

LUO Zhanpeng1, ZHONG Xiaochun2, *, ZHOU Zhi1, YUN Qiang1, ZHANG Bangchao1   

  1. (1. China Railway Construction South China Construction Co., Ltd., Guangzhou 511458, Guangdong, China; 

    2. College of Civil and Transportation Engineering, Hohai University, Nanjing 210098, Jiangsu, China)

  • Online:2022-05-20 Published:2022-06-02

摘要: 为确保土压平衡盾构掘进过程中有效控制排土量,须考虑螺旋输送机构造特征和渣土性质对其影响。将改良后流塑性状态的渣土假设为宾汉姆流体,并基于螺旋输送机构造沿其螺旋排土方向展开成一长条形的长方体排土模型的基础上推导盾构螺旋输送机的理论排土量计算公式。通过对排土量影响因素进行分析表明: 1)排土量受开挖面支护压力、渣土的初始剪切屈服应力影响较大,而受渣土的塑性黏度影响较小; 2)随着隧道埋深和开挖面支护压力的增加,改良渣土的流塑性降低。将该理论成果应用于指导广州地铁21号线浅覆土全断面砂土地层某区间隧道盾构掘进中的渣土改良,开挖面支护压力保持了稳定,地表沉降控制为5 mm

关键词: 土压盾构, 宾汉姆流体, 流塑性, 螺旋输送机, 排土量

Abstract:

The present study aims to effectively control the muck discharging volume of screw conveyor during earth pressure balance(EPB) shield tunneling. In addition, the effects of the structural characteristics of screw conveyor and soil properties are analyzed. The improved soil in a flow plastic state is assumed to be a Bingham fluid and is expanded into a long rectangular parallel piped discharging soil model based on the screw conveyor structure along its discharging direction. Accordingly, the formula for calculating the theoretical muck discharging volume of the screw conveyor is deduced. The analytical results of the influencing factors of the muck discharge volume are as follows: (1) The muck discharging volume is significantly affected by the support pressure on the excavation face and the initial shear yield stress of the soil. However, it is less affected by the plastic viscosity of the soil. (2) The fluidity of the conditioned soil reduces with an increase in tunnel buried depth and the support pressure of the excavation face. These theoretical results are implemented in guiding soil conditioning during EPB shield tunneling in the shallow overlying fullface sandy soil layer of Guangzhou metro line 21, resulting in a stable supporting pressure of the excavation face and a small surface settlement within 5 mm.

Key words:

earth pressure balance shield, Bingham fluid, flow plasticity, screw conveyor, muck discharge volume