针对山东某地下水封液化石油气库工程,基于洞室截面尺寸和场区结构面发育特征,采用Q系统计算出特定Q值洞室围岩段的初步锚喷参数。基于场区地应力分布特征,采用GSI和Hoek-Brown准则建立起Q值与岩体等效力学参数的联系。基于3DEC离散元,分别从连续和非连续围岩角度对锚喷参数进行校核,并基于超载安全系数法评价支护结构的安全性。结果表明:连续围岩条件下,锚喷支护对围岩位移的控制作用明显,锚杆的最小安全系数为2.75,喷层的安全系数为1.25,表明锚喷参数是安全、合理的;非连续围岩条件下,由于出现局部失稳块体,锚喷支护破坏失效;Q系统不针对局部块体失稳问题,表明结合离散元等数值模拟技术进行综合设计的必要性以及施工期对局部失稳问题进行提前甄别的重要性。
Abstract
Based on the size of cavern section and the development characteristics of discontinuities, the preliminary bolt-shotcrete parameters were obtained for specific Q-value cavern surrounding rock using Q system. A water-sealed liquefied petroleum gas rock cavern in Shandong province was taken as research background. In view of the distribution characteristics of in-situ stress, the relationship between Q value and equivalent mechanical parameters of rock mass were established via GSI and Hoek-Brown failure criterion. Using 3DEC software, the preliminary bolt-shotcrete parameters were checked respectively from the aspects of continuous and discontinuous surrounding rocks using 3DEC software, respectively. Moreover, the security safety of support structure was evaluated based on the overloading safety factor law. Results show that: 1) when surrounding rock is continuous, the bolt-shotcrete support has an obvious effect on the displacement of surrounding rock, and the minimum safety factor of bolt is 2.75,while that of the shotcrete layer is 1.25, which indicate that the bolt-shotcrete parameters are safe and reasonable; 2) when surrounding rock is discontinuous, the bolt-shotcrete support fails due to the local unstability of blocks; 3) since the support object of Q system does not include local unstability block, so it is necessary to adopt discrete element numerical simulation for the support design, and it is important to discriminate local instability problems during construction stage.
关键词
地下岩洞 /
Q系统 /
离散元模拟 /
锚喷支护 /
岩体等效力学参数
Key words
underground rock cavern /
Q system /
discrete element simulation /
bolt-shotcrete support /
equivalent mechanical parameters of rock mass
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参考文献
[1] 郑颖人,刘怀恒,顾金才. 均质地层中锚喷支护理论与设计[J]. 岩土工程学报,1981,3(1): 57-69. (ZHENG Ying-ren,LIU Huai-heng,GU Jin-cai. Theory and Design of Shotcrete Lining and Rock Anchorage in Homogeneous Strata[J]. Chinese Journal of Geotechnical Engineering,1981,3(1): 57-69.(in Chinese))
[2] 郑颖人,刘怀恒. 隧洞黏弹塑分析及其在锚喷支护中的应用[J]. 土木工程学报,1982,15(4): 73-78. (ZHENG Ying-ren,LIU Huai-heng. Viscoelastic-plastic Analysis of Tunnels and Its Application to Anchoring and Shotcrete Lining[J]. China Civil Engineering Journal,1982,15(4): 73-78.(in Chinese))
[3] 董方庭,宋宏伟,郭志宏,等. 巷道围岩松动圈支护理论[J]. 煤炭学报,1994,19(1): 21-32. (DONG Fang-ting,SONG Hong-wei,GUO Zhi-hong,et al. Roadway Support Theory based on Broken Rock Zone[J]. Journal of China Coal Society,1994,19(1): 21-32. (in Chinese))
[4] HOEK E,CARRANZA-TORRES C,DIEDERICHS M S,et al. Integration of Geotechnical and Structural Design in Tunnelling[C]// Proceedings University of Minnesota 56th Annual Geotechnical Engineering Conference. New Jersey: Wiley, 2008: 1-53.
[5] 朱万成,赵 文,唐春安,等. 锚喷参数的回归正交有限元试验分析及其应用实例[J]. 岩石力学与工程学报,1999,18(3): 283-286. (ZHU Wan-cheng,ZHAO Wen,TANG Chun-an,et al. Regressive Orthogonal FEM Experimental Analysis of Bolt-spray Parameters and Its Application[J]. Chinese Journal of Rock Mechanics and Engineering,1999,18(3): 283-286.(in Chinese))
[6] 郑颖人,邱陈瑜,宋雅坤,等. 土质隧道围岩稳定性分析与设计计算方法探讨[J]. 后勤工程学院学报,2009,25(3): 1-9.(ZHENG Ying-ren,QIU Chen-yu,SONG Ya-kun,et al. Exploration of Stability Analysis and Design Calculation Methods of Surrounding Rocks in Soil Tunnel[J]. Journal of Logistical Engineering University,2009,25(3): 1-9.(in Chinese))
[7] 徐 军,郑颖人,刘东升. 锚喷支护喷层结构的目标可靠指标和分项系数研究[J]. 岩石力学与工程学报,2002,21(5): 671-674.(XU Jun,ZHENG Ying-ren,LIU Dong-sheng. Research on Object Reliability Index and Partial Coefficient of Bolt-shotcrete Lining for Tunnel[J]. Chinese Journal of Rock Mechanics and Engineering,2002,21(5): 671-674.(in Chinese))
[8] 朱琢华,黄宏伟,杨新安. 锚喷支护设计的工程类比模糊经验法[J]. 煤炭学报,1998,23(6): 571-574.(ZHU Zhuo-hua,HUANG Hong-wei,YANG Xin-an. The Engineering Analogy Fuzzy Experiential Method for Design of Rockbolt and Shotcrete Support[J]. Journal of China Coal Society,1998,23(6): 571-574.(in Chinese))
[9] 冯夏庭,林韵梅. 采矿巷道围岩支护设计专家系统[J]. 岩石力学与工程学报,1992,11(3): 243-253.(FENG Xia-ting,LIN Yun-mei. An Expert System for the Design of Surrounding Rock Support System in Mine Entries[J]. Chinese Journal of Rock Mechanics and Engineering,1992,11(3): 243-253.(in Chinese))
[10]汤劲松,乔春生. 隧道锚喷支护设计的神经元网络方法[J]. 中国公路学报,2002,15(3): 68-72.(TANG Jin-song,QIAO Chun-sheng. Method of Artificial Neural Network for Bolt-shotcrete Support Design in Tunnels[J]. China Journal of Highway and Transport,2002,15(3): 68-72.(in Chinese))
[11]冯夏庭,江 权,向天兵,等. 大型洞室群智能动态设计方法及其实践[J]. 岩石力学与工程学报,2011,30(3): 433-448.(FENG Xia-ting,JIANG Quan,XIANG Tian-bing,et al. Intelligent and Dynamic Design Method of Large Cavern Group and Its Practice[J]. Chinese Journal of Rock Mechanics and Engineering,2011,30(3): 433-448.(in Chinese))
[12]BARTON N,LIEN R,LUNDE J. Engineering Classification of Rock Mass for the Design of Tunnel Support[J]. Rock Mechanics,1974,6(4): 189-236.
[13]GRIMSTAD E,BARTON N. Updating of the Q-system for NMT[C]//Proceedings of the International Symposium on Sprayed Concrete-Modern Use of Wet Mix Sprayed Concrete for Underground Support. Norway: Fagernes,October 18-21, 1993:1-21.
[14]BIENIAWSKI Z T. Engineering Rock Mass Classifications[M]. New York: John Wiley and Sons,1989.
[15]PALMSTRON A. Characterizing Rock Masses by the RMi for Use in Practical Rock Engineering,Part 1: the Development of the Rock Mass Index(RMi)[J]. Tunneling and Underground Space Technology,1996,11(2): 175-188.
[16]FENG X T,HUDSON J A. The Ways Ahead for Rock Engineering Design Methodologies[J]. International Journal of Rock Mechanics and Mining Sciences,2004,41: 255-273.
[17]HOEK E,KAISER P K,BAWDEN W F. Support of Underground Excavations in Hard Rock[M]. London: Taylor & Francis,1995.
[18]HOEK E,CARRANZA-TORRES C,CORKUM B. Hoek-Brown Criterion—2002 Edition[C]//Proceedings of North American Rock Mechanics Society Meeting in Toronto, July 8-10, 2002: 267-273.
[19]CHRISTOPHER M,JOHN S,DAVID E,et al. Rockbolts: A New Numerical Representation and Its Application in Tunnel Design[C]// Proceedings of the 24th U.S. Symposium on Rock Mechanics. New York: Association of Engineering Geologists,June 20-23, 1983:13-25.
[20]郑颖人. 岩土数值极限分析方法的发展与应用[J]. 岩石力学与工程学报,2012,31(7): 1297-1316. (ZHENG Ying-ren. Development and Application of Numerical Limit Analysis for Geological Materials[J]. Chinese Journal of Rock Mechanics and Engineering,2012,31(7): 1297-1316. (in Chinese))
基金
国家重点基础研究发展计划(973)项目(2011CB710605);北京市科学技术委员会重点资助项目(20090102-2796)