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第12期 姚高辉等:程潮铁矿岩爆倾向性分析及其能量预测 ,1497 矿深部矿岩具备了可能发生岩爆的条件 2007,24(4):42 (③)在充分考虑矿区岩体塌陷带、断层带和构 (刘章军,李建林.岩燥综合预测的模糊概率方法.长江科学院 院报,2007,24(4):42) 造应力影响的基础上,建立了与矿区空间形态相似 [6]Li JS.Prediction of Rockburst Haard and its Effect on the En- 的三维有限元模型,通过对矿岩工程地质特性、矿 gineering Project along the Tunnel from Maerqu River to Acehe 区地应力规律和矿区三维有限元数值模拟结果的分 River [Dissertation].Beijing:Chinese Academy of Geological 析,得出该矿岩爆临界深度在一500m水平 Sciences.2006:64 (4)通过对一430m水平开采后矿岩体能量规 (李金锁南水北调西线麻尔曲一阿柯河特长深埋隧道岩燥灾 害预测及其对工程的影响[学位论文]北京:中国地质科学院 律的分析可以得出:由于地应力环境受上部开采活 2006.64) 动的影响,一500m水平应力明显增加,高于 [7]Song W D.Guo L W.Stability in reinforcement on No.2 main 一533m水平:由于-533m水平受上部采动影响较 ore pass of Chengchao iron mine by numerical simulation.JUniv 小,岩爆倾向性出现减弱,但一533m水平以下矿岩 Sci Technol Beijing.2001.23(3):193 能量最大值却逐渐增大, (宋卫东,郭廖武。程潮铁矿2:主溜井加固工程稳定性数值分 析.北京科技大学学报,2001,23(3):193) 参考文献 [8]Li JS,Peng H.Ma X M.et al.Three-dimensional finite element [1]Barton N.Some new Ovalue correlations to assist in site charac- numerical simulation of geo"stress in Da-Li railw ay tunnel of Yun- terisation and tunnel design.Int J Rock Mech Min Sci,2002.39 nan-Chin J Geotech Eng.2006,28(6):800 (2):185 (李金锁,彭华,马秀敏,等·大丽线铁路隧道工程地应力三维有 [2]Russoe G.Grasso P.On the classification of rockmass excavation 限元数值模拟分析.岩土工程学报,2006,28(6):800) behavior in tunneling//The 1lth Congress of International Soci- [9]Cai S J.Zhang L H.Zhou W L.Research on prediction of rock ety for Rock Mechanics.Lisbon:Portuguese Geotechnical Soci- burst in deep hard-rock mines.J Saf Sci Technol.2005,1(5): ty,2007:9 [3]Ou Yang Z H.Yao G H.Xu M G.et al.Investigation of mining (蔡嗣经,张禄华,周文略。深井硬岩矿山岩爆灾害预测研究 tremor mechanism in Puqing mine.J Wuhan Univ Sci Technol, 中国安全生产科学技术,2005,1(5):17) 2008,31(2):155 [10]Li C H.Cai M F.The relation of complete stress"strain curve to (欧阳治华,姚高辉,许梦国,等.普庆铁矿矿震发生机理研究 rockburst.JUniv Sci Technol Beijing.1999.21(6):513 武汉科技大学学报,2008,31(2):155) (李长洪,蔡美峰·岩石全应应变曲线及其与岩爆的关系, [4]Xu M G,Yao G H,Ou Yang Z H,et al.Investigation of com- 北京科技大学学报,1999,21(6):513) prehensive rockburst prediction during deepmining/Internation- [11]Cai M F.Wang JA.Wang S H.Analysis on energy distribution al Young Scholar Symposium on Rock Mechanies 2008.Rotter- and prediction of rock burst during deepmining excavation in dam:A A Balkema Press.2008:851 Linglong goldmine.Chin J Rock Mech Eng.2001.20(1):38 [5]Liu Z J.Li JL.Comprehensive prediction method for rock burst (蔡美峰,王金安,王双红玲珑金矿深部开采岩体能量分析与 based on fuzzy probability theory.J Yangtze River Sci Res Inst. 岩燥综合预测.岩石力学与工程学报,2001,20(1):38)矿深部矿岩具备了可能发生岩爆的条件. (3) 在充分考虑矿区岩体塌陷带、断层带和构 造应力影响的基础上‚建立了与矿区空间形态相似 的三维有限元模型.通过对矿岩工程地质特性、矿 区地应力规律和矿区三维有限元数值模拟结果的分 析‚得出该矿岩爆临界深度在-500m 水平. (4) 通过对-430m 水平开采后矿岩体能量规 律的分析可以得出:由于地应力环境受上部开采活 动的 影 响‚-500m 水 平 应 力 明 显 增 加‚高 于 -533m水平;由于-533m 水平受上部采动影响较 小‚岩爆倾向性出现减弱‚但-533m 水平以下矿岩 能量最大值却逐渐增大. 参 考 文 献 [1] Barton N.Some new Q-value correlations to assist in site charac￾terisation and tunnel design.Int J Rock Mech Min Sci‚2002‚39 (2):185 [2] Russoe G‚Grasso P.On the classification of rockmass excavation behavior in tunneling∥ The11th Congress of International Soci￾ety for Rock Mechanics.Lisbon:Portuguese Geotechnical Soci￾ety‚2007:9 [3] Ou Yang Z H‚Yao G H‚Xu M G‚et al.Investigation of mining tremor mechanism in Puqing mine.J W uhan Univ Sci Technol‚ 2008‚31(2):155 (欧阳治华‚姚高辉‚许梦国‚等.普庆铁矿矿震发生机理研究. 武汉科技大学学报‚2008‚31(2):155) [4] Xu M G ‚Yao G H ‚Ou Yang Z H‚et al.Investigation of com￾prehensive rockburst prediction during deepmining∥ Internation￾al Young Scholar Symposium on Rock Mechanics 2008.Rotter￾dam:A A Balkema Press‚2008:851 [5] Liu Z J‚Li J L.Comprehensive prediction method for rock burst based on fuzzy probability theory.J Y angtze River Sci Res Inst‚ 2007‚24(4):42 (刘章军‚李建林.岩爆综合预测的模糊概率方法.长江科学院 院报‚2007‚24(4):42) [6] Li J S.Prediction of Rockburst Haz ard and its Ef fect on the En￾gineering Project along the T unnel f rom Maerqu River to Acehe River [ Dissertation ].Beijing:Chinese Academy of Geological Sciences‚2006:64 (李金锁.南水北调西线麻尔曲─阿柯河特长深埋隧道岩爆灾 害预测及其对工程的影响[学位论文].北京:中国地质科学院‚ 2006:64) [7] Song W D‚Guo L W.Stability in reinforcement on No.2main ore-pass of Chengchao iron mine by numerical simulation.J Univ Sci Technol Beijing‚2001‚23(3):193 (宋卫东‚郭廖武.程潮铁矿2#主溜井加固工程稳定性数值分 析.北京科技大学学报‚2001‚23(3):193) [8] Li J S‚Peng H‚Ma X M‚et al.Three-dimensional finite element numerical simulation of geo-stress in Da-Li railway tunnel of Yun￾nan.Chin J Geotech Eng‚2006‚28(6):800 (李金锁‚彭华‚马秀敏‚等.大丽线铁路隧道工程地应力三维有 限元数值模拟分析.岩土工程学报‚2006‚28(6):800) [9] Cai S J‚Zhang L H‚Zhou W L.Research on prediction of rock burst in deep hard-rock mines.J Saf Sci Technol‚2005‚1(5): 17 (蔡嗣经‚张禄华‚周文略.深井硬岩矿山岩爆灾害预测研究. 中国安全生产科学技术‚2005‚1(5):17) [10] Li C H‚Cai M F.The relation of complete stress-strain curve to rockburst.J Univ Sci Technol Beijing‚1999‚21(6):513 (李长洪‚蔡美峰.岩石全应力-应变曲线及其与岩爆的关系. 北京科技大学学报‚1999‚21(6):513) [11] Cai M F‚Wang J A‚Wang S H.Analysis on energy distribution and prediction of rock burst during deepmining excavation in Linglong goldmine.Chin J Rock Mech Eng‚2001‚20(1):38 (蔡美峰‚王金安‚王双红.玲珑金矿深部开采岩体能量分析与 岩爆综合预测.岩石力学与工程学报‚2001‚20(1):38) 第12期 姚高辉等: 程潮铁矿岩爆倾向性分析及其能量预测 ·1497·
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