|
[1] XIA K Z,CHEN C X,FU H,et al. Mining-induced ground deformation in tectonic stress metal mines:a case study[J]. Engineering Geology,2016,210(1):212–230.
[2] LI X B,LI D Y,LIU Z X. Determination of the minimum thickness of crown pillar for safe exploitation of a subsea gold mine based on numerical modeling[J]. International Journal of Rock Mechanics and Mining Sciences,2013,57(1):42–56.
[3] 宋许根,陈从新,夏开宗,等. 竖井变形破坏机制与继续使用可行性探究[J]. 岩土力学,2017,38(1):331–342.(SONG Xugen,CHEN Congxin,XIA Kaizong,et al. Research on deformation mechanism and feasibility to continue use mine shaft[J]. Rock and Soil Mechanics,2017,38(1):331–342.(in Chinese))
[4] MA F S,ZHAO H J,DENG Q H,et al. Vertical shaft collapse at the jinchuan nickel mine,gansu province,China:analysis of contributing factors and causal mechanisms[J]. Environmental Earth Sciences,2013,69(1):21–28.
[5] REN W Z,GUO C M,PENG Z Q,et al. Model experimental research on deformation and subsidence characteristics of ground and wall rock due to mining under thick overlying terrane[J]. International Journal of Rock Mechanics and Mining Sciences,2010,47(4):614–624.
[1] ZHAO H J,MA F S,XU J M,et al. In situ stress field inversion and its application in mining-induced rock mass movement[J]. International Journal of Rock Mechanics and Mining Sciences,2012,53(9):120–128.
[2] LI W X,LEI W,LIU X M. Ground movements caused by deep underground mining in Guan-Zhuang iron mine,Luzhong,China[J]. International Journal of Applied Earth Observation and Geoinformation,2010,12:175–182.
[3] 夏开宗,陈从新,付 华,等. 程潮铁矿西区不同采矿水平下的岩体变形规律分析[J]. 岩石力学与工程学报,2016,35(4):792–805. (XIA Kaizong,CHEN Congxin,FU Hua,et al. Deformation analysis of rock mass at different mining levels in west area of Chengchao iron[J]. Chinese Journal of Rock Mechanics and Engineering,2016,35(4):792–805.(in Chinese))
[4] 黄平路,陈从新. 厚覆盖层矿山地下开采地表塌陷机制分析[J]. 岩土力学,2010,31(增1):357–362.(HUANG Pinglu,CHEN Congxin. Analysis of mechanism of surface subsidence caused by underground mining with thick overburden[J]. Rock and Soil Mechanics,2010,31(Supp.1):357–362.(in Chinese))
[5] 方建勤,彭振斌,颜荣贵. 构造应力型开采地表沉陷规律及其工程处理方法[J]. 中南大学学报:自然科学版,2004,35(3):506–510.(FANG Jianqin,PENG Zhenbin,YAN Ronggui. The law of tectonic stress mining ground surface subsidence and its engineering treatment method[J]. Journal of Central South University of Technology:Natural Science,2004,35(3):506–510.(in Chinese))
[6] 白义如,谷志孟,白世伟. 程潮铁矿东区地下采矿引起地表沉降和岩层移动初探[J]. 岩石力学与工程学报,2002,21(3):340–342. (BAI Yiru,GU Zhimeng,BAI Shiwei. Primary study on ground surface subsidence and rock mass movement in east area of Chengchao iron mine due to underground mining[J]. Chinese Journal of Rock Mechanics and Engineering,2002,21(3):340–342.(in Chinese))
[7] BRADY B H G,BROWN E T. Rock mechanics for underground mining[M]. London:George Allen Unwin,1985:459–470.
[8] VILLEGAS T,NORDLUND E,DAHNÉR-LINDQVIST C. Hanging wall surface subsidence at the Kiirunavaara Mine,Sweden[J]. Engineering Geology,2011,121(1/2):18–27.
[9] VILLEGAS B,FERNANDO T,NORDLUND E. Numerical analyses of the hanging wall failure due to sublevel caving:study case[J]. International Journal of Mining and Mineral Engineering,2013,4(3):201–223.
[10] 宋许根,陈从新,夏开宗,等. 程潮铁矿塌陷区周边地表变形扩展规律研究[J]. 岩石力学与工程学报,2018,37(2):415–429.(Song Xugen,Kaizong,CHEN Congxin,et al. Study on ground deformation around collapse in Chengchao iron mine[J]. Chinese Journal of Rock Mechanics and Engineering,2018,37(2):415–429.(in Chinese))
[11] SONG X,CHEN C,XIA K,et al. Analysis of the surface deformation characteristics and strata movement mechanism in the main shaft area of Chengchao Iron Mine[J]. Environmental Earth Sciences,2018,77(9):335.
[12] 陈从新,肖国峰,黄平路,等. 程潮铁矿西区地表塌陷变形监测与预测预报研究报告[R]. 武汉:中国科学院武汉岩土力学研究所,2 007–2 014.(CHEN Congxin,XIAO Guofeng,HUANG Pinglu,et al. Surface subsidence monitoring and forecasting in eastern area of Chengchao iron mine caused by mining[R]. Wuhan:Institute of Rock and Soil Mechanics,Chinese Academy of Sciences,2 007–2 014.(in Chinese))
[13] 洪文之,张 林,冯正华. 西宁石膏岩对水工建筑物危害的探讨[J]. 水文地质工程地质,1998,(6):48–49(HONG Zhiwen,ZHANG Lin FENG Zhenghua. Analysis of damage to hydraulic structure induced by gypsum mine[J]. Hydrogeology and Engineering Geology,1998,(6):48–49.(in Chinese))
[14] 宋卫东,陈从新. 程潮铁矿西区地表错动机制及对重要建(构)筑物场地稳定性影响研究总结报告[R]. 北京:北京科技大学,2013. (SONG Weidong,CHEN Chongxin. The research report of the surface rupture mechanism and its influence on the field stability of important building in the western area of Chengchao iron mine[R]. Beijing:University of Science and Technology Beijing,2013.(in Chinese))
[15] 陈从新,肖国峰,黄平路. 程潮铁矿西区节理调查及岩体力学参数测试[R]. 武汉:中国科学院武汉岩土力学研究所,2014.(CHEN Congxin,XIAO Guofeng,HUANG Pinglu,et al. Joint survey and mechanical parameters test of rock mass in west area of Chengchao iron mine[R]. Wuhan:Institute of Rock and Soil Mechanics,Chinese Academy of Sciences,2014.(in Chinese))
[16] 赵法锁,张伯友,彭建兵,等. 仁义河特大桥南桥台边坡软岩流变性研究[J]. 岩石力学与工程学报,2002,21(10):1 527–1 532. (ZHAO Fasuo,ZHANG Boyou,PENG Jianbing,et al. Rheological study on soft rocks in the south abutment slope of Renyi River Great Bridge[J]. Chinese Journal of Rock Mechanics and Engineering,2002,21(10):1 527–1 532.(in Chinese))
|