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工程力学  2014 

隧道初期支护结构受力特性及适用性研究

, PP. 78-84

Keywords: 型钢钢架,格栅钢架,适用性,有限元模拟,室内和现场试验

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Abstract:

复合衬砌是目前隧道支护结构的基本形式,即由初期支护与模筑混凝土二次衬砌结构复合而成。按照新奥法原理进行设计和施工时,在围岩稳定性较差的条件下,初期支护通常采用由喷射混凝土与型钢钢架或格栅钢架及锚杆组成的组合结构,但在采用型钢钢架还是格栅钢架支护问题上一直存在不同的观点,其争论的焦点是对其支护结构性能及其适应性的认识,核心则是“支护-围岩”作用体系中支护结构的作用及其演化过程特点,而在不同围岩及工程尺度条件下其作用效果也有所不同。为此,该文首先通过型钢钢架和格栅钢架的室内性能试验,对两种支护结构的受力特性、破坏过程及演化特征、极限承载力及变形量等进行了系统的研究;然后通过有限元组合结构进一步分析了型钢钢架和格栅钢架的受力特性、极限承载力和变形特性;最后结合京沪高铁金牛山隧道现场试验,取得了两种支护类型下围岩荷载释放规律和压力分布特点,并分别给出了型钢钢架与格栅钢架的特点和最佳适用条件。该成果对于澄清支护作用机制以及隧道初期支护设计和施工具有重要的理论价值和指导作用。

References

[1]  王梦恕. 地下工程浅埋暗挖技术通论[M]. 合肥: 安徽教育出版社, 2004: 212―215.
[2]  Wang Mengshu. Mining method adopted for shallow underground works [M]. Hefei: Anhui Education Press, 2004: 212―215. (in Chinese)
[3]  谭忠盛, 喻渝, 王明年, 等. 大断面黄土隧道中型钢与格栅适应性的对比试验[J]. 岩土工程学报, 2009, 31(4): 628―633.
[4]  Tan Zhongsheng, Yu Yu, Wang Mingnian, et al. Comparative tests on section steel and steel grid for loess tunnels with large section [J]. Chinese Journal of Geotechnical Engineering, 2009, 31(4): 628―633. (in Chinese)
[5]  曲海锋, 朱合华, 黄成造, 等. 隧道初期支护的钢钢架与钢格栅选择研究[J]. 地下空间与工程学报, 2007, 3(2): 258―262.
[6]  Qu Haifeng, Zhu Hehua, Huang Chengzao, et al. Study on selection of section steel and grid steel in primary support system of tunnel [J]. Chinese Journal of Underground Space and Engineering, 2007, 3(2): 258―262. (in Chinese)
[7]  沈才文, 童立元. 钢钢架柔性支撑稳定性预测判别方法探讨[J]. 土木工程学报, 2007, 40(3): 88―91.
[8]  Shen Caiwen, Tong Liyuan. Discussions on predicting the stability of flexible shotcrete and steel arch frame support for tunnels [J]. China Civil Engineering Journal, 2007, 40(3): 88―91. (in Chinese)
[9]  李德武, 李培天. 黄土隧道钢钢架受力量测与有限元分析[J]. 公路, 2008(8): 180―183.
[10]  Li Dewu, Li Peitian. Stress measurement of steel centering of tunnel in loess and analysis of finite element [J]. Highway, 2008(8): 180―183. (in Chinese)
[11]  赵勇, 刘建友, 田四明. 深埋隧道软弱围岩支护体系受力特征的试验研究[J]. 岩石力学与工程学报, 2011, 30(8): 1663―1670.
[12]  Zhao Yong, Liu Jianyou, Tian Siming. Experimental study of mechanical characteristics of support system for weak surrounding rock of deep tunnels [J]. Rock Mechanics and Rock Engineering, 2011, 30(8): 1663―1670. (in Chinese)
[13]  黄宏伟, 徐凌. 大风垭口岩石公路隧道围岩及初期支护变形与内力研究[J]. 岩石力学与工程学报, 2004, 23(1): 44―52.
[14]  Huang Hongwei, Xu Ling. Study on deformation and internal force of surrounding rocks and initial support in Dafengyakou rock road tunnel [J]. Rock Mechanics and Rock Engineering, 2004, 23(1): 44―52. (in Chinese)
[15]  夏松林, 吕学武. 钢格栅喷混凝土支护下的软岩控制效果分析[J]. 山西建筑, 2007, 33(22): 129―130.
[16]  Xia Songlin, Lü Xuewu. Analysis on control effects of soft rock with support method of shotcrete on steel grill [J]. Shanxi Architecture, 2007, 33(22): 129―130. (in Chinese)
[17]  王任国, 张立勇, 刘侠, 等. 格栅钢架与型钢拱架在隧洞支护中的比较与应用[J]. 四川水利, 2007, 28(1): 32―34.
[18]  Wang Renguo, Zhang Liyong, Liu Xia, et al. Comparison and application of grille type steel truss and rolled steel arch truss on tunnel support [J]. Sichuan Water Conservancy, 2007, 28(1): 32―34. (in Chinese)
[19]  Carranza-Torres C, Diederichs M. Mechanical analysis of circular liners with particular reference to composite supports. For example, liners consisting of shotcrete and steel sets [J]. Tunnelling and Underground Space Technology, 2009, 24(5): 506―532.
[20]  Hoek E. 2007. Tunnels in weak rock. In Practical Rock Engineering [DB]. Available for downloading at Hoek’s Corner. www.rocscience.com, 2007.
[21]  Oreste P P. A procedure for determining the reaction curve of shotcrete lining considering transient conditions [J]. Rock Mechanics and Rock Engineering, 2003, 36(3): 209―236.

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