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隧道建设(中英文) ›› 2016, Vol. 36 ›› Issue (9): 1076-1084.DOI: 10.3973/j.issn.1672-741X.2016.09.008

• 研究与探索 • 上一篇    下一篇

红谷隧道围堰塑性混凝土防渗墙抗渗性能分析

邵阳1, 傅鹤林2, 刘维正2, 孙广臣2   

  1. (1. 中铁隧道勘测设计研究院, 河南洛阳 471009; 2. 中南大学土木工程学院, 湖南长沙 410075)
  • 收稿日期:2016-05-19 修回日期:2016-08-26 出版日期:2016-09-20 发布日期:2016-09-20
  • 作者简介:邵阳(1984—),男,吉林柳河人,2007年毕业于中南大学,土木工程专业,本科,工程师,主要从事隧道与地下工程施工技术服务工作。Email: 452784250@qq.com。

Analysis of Antiseepage Performance of Plastic Concrete Wall Used in Cofferdam of Honggu Tunnel

SHAO Yang1, FU Helin2, LIU Weizheng2, SUN Guangchen2   

  1. (1. Survey, Design and Research Institute of China Railway Tunnel Group, Luoyang 471009, Henan, China; 2. School of Civil Engineering, Central South University, Changsha 410075, Hunan, China)
  • Received:2016-05-19 Revised:2016-08-26 Online:2016-09-20 Published:2016-09-20

摘要:

为探讨运行环境下塑性混凝土防渗墙工作性能,获取合理的设计参数取值,以红谷隧道围堰工程为背景,结合典型断面建立渗流数值模型,分析塑性混凝土防渗墙渗透系数k和厚度d以及围堰水头hr变化下共11种工况的围堰渗流性状。结果表明: 随着渗透系数k的减小,围堰内单宽渗流量Q随之减小,且变化速率逐渐降低,而防渗墙内水力坡降峰值Js基本保持不变;随着防渗墙厚度d的增大,围堰内Q值和Js值均随之减小,且变化速率逐渐降低;随着围堰水头hr的下降,围堰内Q值和Js值均随之线性降低。分析得到兼具良好防渗能力和经济效益的渗透系数k和厚度d的设计取值,并提出满足设计要求的塑性混凝土施工配合比。最后,通过高密度电法和围堰内外水位动态监测对塑性混凝土防渗墙的防渗效果进行检测和评价,验证设计和施工参数的合理性。

关键词: 红谷隧道, 围堰, 塑性混凝土, 渗透系数, 防渗墙厚度, 围堰水头, 渗流分析

Abstract:

The seepage numerical models of typical sections of cofferdam of Honggu Tunnel are established; and cofferdam seepage properties under 11 kinds of construction conditions when the permeability coefficient k and thickness d of the cutoff wall and the weir head hr varying, are analyzed. The results indicate that: 1) The cofferdam seepage flow per unit width Q reduces with the permeability coefficient k decreases; and the variation velocity of Q reduces gradually; the peak of hydraulic grade Js remains stable in cutoff wall. 2) The Q and Js reduce with the cutoff wall thickness d decreases; and the variation velocities of Q and Js reduce gradually. 3) The Q and Js reduce linearly with the weir head hr decreases. The design values of k and d with good antiseepage ability and economic benefits are obtained; furthermore the mixing proportions of corresponding plastic concrete which can meet the design requirements are presented. The antiseepage performance of plastic concrete wall is detected and evaluated by high density resistivity method and monitoring of water levels inside and outside cofferdam.

Key words: Honggu Tunnel, cofferdam, plastic concrete, permeability coefficient, cutoff wall thickness, weir head, seepage analysis

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