Formation and Height of the Interconnected Fractures Zone after Extraction of Thick Coal Seams with Weak Overburden in Western China

International journal of mine water - Tập 36 Số 1 - Trang 59-66 - 2017
Jiuchuan Wei1, Fuzhu Wu1, Huiyong Yin1, Jinyun Guo1, Longfei Xiao1, Hongfeng Zhi2, Liliana Lefticariu3
1Shandong University of Science & Technology
2Jinjitan Coal Mine of Shaanxi Future Energy Company
3southern illinois university

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Tài liệu tham khảo

Bai M, Elsworth D (1990) Some aspects of mining under aquifers in China. Min Sci Tech 10(1):81–91

China Coal Industry Bureau (2000) Measuring method on height of water flowing fractured zone using losses of drilling fluid. Coal Ind Stand People’s Repub China MT/T 865–2000:1–3 [in Chinese]

Hu G, Li WP, Cheng W (2008) Study on the law of fractured full-mechanized caving mining in Huainan coal. Coal Eng 5:74–76 [in Chinese]

Kendorski FS (1993) Effect of high-extraction coal mining on surface and ground waters. In: Proceedings of the 12th conference ground control in mining, West Virginia University, Morgantown, WV, USA

Kratzsch H (1983) Mining subsidence engineering. Springer, Berlin

Liu TQ (1981) Coal Mine Ground Movement and Strata Failure. Coal Industry Publ House, Beijing [in Chinese]

Lv WH (2014) Measure and simulation for development height of water conducted crack zone in overburden roof. J Xi’an Univ Sci Technol 34(3):309–313 [in Chinese]

Ma YJ, Wu Q, Zhang ZY, Hong YQ, Guo LW, Tian HS, Zhang LG (2008) Research on prediction of water conducted fissure height in roof of coal mining seam. J China Coal Sci Technol 36(5):59–62 [in Chinese]

Ma XD, Wang WK, Zhu L (2010) Mining impact on springs in ecologically fragile area. J China Coal Geol 22(1):32–36 [in Chinese]

Palchik V (2002) Influence of physical characteristics of weak rock mass on height of caved zone over abandoned subsurface coal mines. Environ Geol 42(1):92–101

Peng SP, Zhang JC (2007) Engineering geology for underground rocks. Springer, Berlin

Ren W, Guo C, Peng Z, Wang Y (2010) Model experimental research on deformation and subsidence characteristics of ground and wall rock due to mining under thick overlying terrane. Int J Rock Mech Min Sci 47:614–624

SAWS, SACMS (2009) Coal Mine Water Prevention and Control Regulations. China Coal Industry Publ House, Beijing. ISBN 978-7-5020-3586-0 [in Chinese]

Shen H, Coal Group Company (2012) Research of effect on groundwater resources and ecology by modern coal mining technology in Shendong mining area. China Univ Min Technol Press, Beijing [in Chinese]

Turchaninov IA, Iofis MA, Kasparian EV (1977) Principles of rock mechanics. Nedra, Leningrad

Venticinque GA (2013) Advanced numer`ical modeling of fracture propagation in rock. Univ of Wollongong, Australia

Wang YN (1982) Prediction of the height of water conducting fissured zone by amazing the stress distribution in overlying strata. J China Coal Soc 1:92–99 [in Chinese]

Wang Y (2013) Research on the technical scheme of coal mining under water-containing condition in Yushuwan coal mine. Xi’an Univ Sci Technol Press, Xi’an [in Chinese]

Wu K, Jin J, Dai Z, Jiang J (2002) An experimental study on the transmission of mining subsidence in soil. J China Coal Soc 27(06):601–603 [in Chinese]

Zhang YJ, Kang YH (2005) Summarize and estimation of the development on the exploration of overburden failure law. J China Coal Min Technol 10(2):10–12 [in Chinese]

Zhang JX, Jiang HQ, Deng XJ, Ju F (2014) Prediction of the height of the water-conducting zone above the mined panel in solid backfill mining. Mine Water Environ 33:317–326