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2019 | OriginalPaper | Chapter

Mine Water Inrush

Authors : Qiang Wu, Shuning Dong, Bo Li, Wanfang Zhou

Published in: Environmental Geology

Publisher: Springer US

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Excerpt

Caving zone
The completely collapsed part of the overlying rock in response to mining. The rock has the characteristics of irregularity, bulking property, and poor density. The caving zone is not effective in preventing water from entering the mining area.
Draft zone of confined water
Refers to the upward penetration height of water from the confined aquifer into the geologic barrier along fissures or fractures in the floor.
Floor rock pressure failure zone
Due to mining-induced stresses, the floor rock is continuously destroyed, resulting in a rock failure zone. Hydraulic conductivity increases significantly in the altered rock formation.
Goaf water
Water in old excavated roadways, abandoned mines, and caves. The water pressure is generally large. Once exposed, the goaf water can suddenly gush into active mining areas, resulting in mass destruction. Water gushing may be accompanied with emission of harmful gases. The gushing water duration is typically short.
Mine water inrush classification
A system of classifying water inrushes into different types based on the characteristics of mine water inrush, water inrush pathway, water inrush mode, and hazard form.
Mine water inrush
An incident in which a large amount of water suddenly poured into mines through water-conducting pathways from aquifers, water-rich caves, goafs, and other strong water-bearing geological bodies.
Water-filling channel
The pathways of water flowing into mines, such as faults, rock pores, fissures, conduits, caves, and collapse columns.
Water-filling source
Sources of water flowing into mines. They mainly include atmospheric precipitation, surface water, groundwater, and goaf water.
Water-filling strength
The amount of groundwater flowing into mines. This parameter is used to reflect complexity of mine hydrogeological conditions.

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Literature
1.
go back to reference Wu Q, Zhao SQ, Li JS, YJ F, Yin SX, Liu SQ (2011) The preparation background and the main points of rule of mine prevention and cure water disaster. J China Coal Soc 36(1):70–74 Wu Q, Zhao SQ, Li JS, YJ F, Yin SX, Liu SQ (2011) The preparation background and the main points of rule of mine prevention and cure water disaster. J China Coal Soc 36(1):70–74
2.
go back to reference Wu Q, Cui FP, Zhao SQ, Liu SQ, Zeng YF, YW G (2013) Type classification and main characteristics of mine water disasters. J China Coal Soc 38(4):561–565 Wu Q, Cui FP, Zhao SQ, Liu SQ, Zeng YF, YW G (2013) Type classification and main characteristics of mine water disasters. J China Coal Soc 38(4):561–565
3.
go back to reference Zhao YS (1994) Rock fluid mechanics in mine. China Coal Industry Publishing House, Beijing Zhao YS (1994) Rock fluid mechanics in mine. China Coal Industry Publishing House, Beijing
4.
go back to reference Wu Q, Jin Y (1995) Decision system of water control in mines of north china type coal fields. Coal Industry Publishing House of China, Beijing Wu Q, Jin Y (1995) Decision system of water control in mines of north china type coal fields. Coal Industry Publishing House of China, Beijing
5.
go back to reference State Administration of Work Safety Supervision (2009) Provisions for mine water control. China Coal Industry Publishing House, Beijing State Administration of Work Safety Supervision (2009) Provisions for mine water control. China Coal Industry Publishing House, Beijing
6.
go back to reference Wu Q (2009) Interpretation of provisions for mine water control. China University of Mining and Technology Press, Xuzhou Wu Q (2009) Interpretation of provisions for mine water control. China University of Mining and Technology Press, Xuzhou
7.
go back to reference State Administration of Work Safety Supervision (2011) Coal mine safety regulations. China Coal Industry Publishing House, Beijing State Administration of Work Safety Supervision (2011) Coal mine safety regulations. China Coal Industry Publishing House, Beijing
8.
go back to reference Wu Q (2001) Supervision of coal mine safety (mine water disaster and investigation). China University of Mining and Technology Press, Xuzhou Wu Q (2001) Supervision of coal mine safety (mine water disaster and investigation). China University of Mining and Technology Press, Xuzhou
9.
go back to reference DJ X, Shao DS, Nie JW, Chen HJ (2013) Advances in the mechanism of groundwater gushing from bed separation of hard overlying strata induced by repeated coal mining. Sci Technol Rev 31(23):75–79 DJ X, Shao DS, Nie JW, Chen HJ (2013) Advances in the mechanism of groundwater gushing from bed separation of hard overlying strata induced by repeated coal mining. Sci Technol Rev 31(23):75–79
10.
go back to reference Wu Q, Li ZY (2002) Mine water prevention and control. China University of Mining and Technology Press, Xuzhou Wu Q, Li ZY (2002) Mine water prevention and control. China University of Mining and Technology Press, Xuzhou
11.
go back to reference Wang JM (2000) Measurement and physical analogue on water inrush from coal floor induced by progressive intrusion of artesian water into protective aquiclude. Chin J Geotech Eng 21(9):546–549 Wang JM (2000) Measurement and physical analogue on water inrush from coal floor induced by progressive intrusion of artesian water into protective aquiclude. Chin J Geotech Eng 21(9):546–549
12.
go back to reference Zhu SY, YJ J, Zhao ZZ, Liu DQ (2009) Field measurement study on deformation and destruction of “three-soft” coal seam floor of Chaohua coal mine. Chin J Geotech Eng 31(4):639–642 Zhu SY, YJ J, Zhao ZZ, Liu DQ (2009) Field measurement study on deformation and destruction of “three-soft” coal seam floor of Chaohua coal mine. Chin J Geotech Eng 31(4):639–642
13.
go back to reference Wu Q, Liu JT, Zhong YP, Yin ZR, Li JM, Hong YQ, Ye GJ, Tong YD, Dong DL (2002) The numeric simulations of water-bursting time-effect for faults in Zhaogezhuang coal mine, Kailuan, China. J China Coal Soc 27(5):511–516 Wu Q, Liu JT, Zhong YP, Yin ZR, Li JM, Hong YQ, Ye GJ, Tong YD, Dong DL (2002) The numeric simulations of water-bursting time-effect for faults in Zhaogezhuang coal mine, Kailuan, China. J China Coal Soc 27(5):511–516
14.
go back to reference Yin SX, Wu W, Li YJ (2008) Study on Karst collapse column and water inrush in North China coalfield. China Coal Industry Publishing House, Beijing Yin SX, Wu W, Li YJ (2008) Study on Karst collapse column and water inrush in North China coalfield. China Coal Industry Publishing House, Beijing
15.
go back to reference Sui WH, Cai GT, Dong QH (2007) Experimental research on critical percolation gradient of quicksand across overburden fissures due to coal mining near unconsolidated soil layers. Chin J Rock Mech Eng 26(10):2084–2091 Sui WH, Cai GT, Dong QH (2007) Experimental research on critical percolation gradient of quicksand across overburden fissures due to coal mining near unconsolidated soil layers. Chin J Rock Mech Eng 26(10):2084–2091
16.
go back to reference Han SQ, Fan LM, Yang BG (1992) Some hydrogeological and engineering-geological problems concerning development of north Shaanxi Jurassic coalfield. Coal Geol China 4(1):49–52 Han SQ, Fan LM, Yang BG (1992) Some hydrogeological and engineering-geological problems concerning development of north Shaanxi Jurassic coalfield. Coal Geol China 4(1):49–52
17.
go back to reference State Bureau of Coal Industry (2010) Buildings, water, railway and main shaft and this coal pillar and press coal mining regulations. China Coal Industry Publishing House, Beijing State Bureau of Coal Industry (2010) Buildings, water, railway and main shaft and this coal pillar and press coal mining regulations. China Coal Industry Publishing House, Beijing
18.
go back to reference Wu Q, Xu H, Pang W (2008) GIS and ANN coupling model: an innovative approach to evaluate vulnerability of karst water inrush in coalmines of north China. Environ Geol 54(5):937–943CrossRef Wu Q, Xu H, Pang W (2008) GIS and ANN coupling model: an innovative approach to evaluate vulnerability of karst water inrush in coalmines of north China. Environ Geol 54(5):937–943CrossRef
19.
go back to reference Li B, Wu Q, Chen YL, Wang GL, Xu L (2016) Multi-factor evaluation for the water yield properties of coal floor aquifers, based on GIS. Water Pract Technol 11(1):75–85CrossRef Li B, Wu Q, Chen YL, Wang GL, Xu L (2016) Multi-factor evaluation for the water yield properties of coal floor aquifers, based on GIS. Water Pract Technol 11(1):75–85CrossRef
20.
go back to reference Li JK (1990) Prevention and control of mine karst water. China Coal Industry Publishing House, Beijing Li JK (1990) Prevention and control of mine karst water. China Coal Industry Publishing House, Beijing
21.
go back to reference Luo LP, Peng SP (2005) Mechanism study of water-inrush hazard of floor strata in mining on confined aquifer. J China Coal Soc 30(4):459–462 Luo LP, Peng SP (2005) Mechanism study of water-inrush hazard of floor strata in mining on confined aquifer. J China Coal Soc 30(4):459–462
22.
go back to reference Wu Q, Chen H, Liu SQ (2010) Methodology and application on size-limited structure predictions with ANN based on loop overlapping theory: a case study of Lingzi coal mine in Zibo. J China Coal Soc 35(3):449–453 Wu Q, Chen H, Liu SQ (2010) Methodology and application on size-limited structure predictions with ANN based on loop overlapping theory: a case study of Lingzi coal mine in Zibo. J China Coal Soc 35(3):449–453
23.
go back to reference Wu Q, Zhang ZL, Zhang SY (2007) A new practical methodology of the coal floor water inrush evaluating II – the vulnerable index method. J China Coal Soc 32(11):1121–1126 Wu Q, Zhang ZL, Zhang SY (2007) A new practical methodology of the coal floor water inrush evaluating II – the vulnerable index method. J China Coal Soc 32(11):1121–1126
24.
go back to reference Yin GZ, Li X, Han PB, Li MH, Li WP, Deng BZ (2016) Experimental study on overburden strata fracture evolution law in three dimensional mine induced stress conditions. J China Coal Soc 41(2):406–413 Yin GZ, Li X, Han PB, Li MH, Li WP, Deng BZ (2016) Experimental study on overburden strata fracture evolution law in three dimensional mine induced stress conditions. J China Coal Soc 41(2):406–413
25.
go back to reference Zhao TC (2006) Integrated control technology for Ordovician limestone water in North China. China Coal Industry Publishing House, Beijing Zhao TC (2006) Integrated control technology for Ordovician limestone water in North China. China Coal Industry Publishing House, Beijing
26.
go back to reference Wu Q, Fan ZL, Liu SQ (2011) Water-richness evaluation method of water-filled aquifer based on the principle of information fusion with GIS: water-richness index method. J China Coal Soc 36(7):1124–1128 Wu Q, Fan ZL, Liu SQ (2011) Water-richness evaluation method of water-filled aquifer based on the principle of information fusion with GIS: water-richness index method. J China Coal Soc 36(7):1124–1128
27.
go back to reference Sui WH, Dong QH (2008) Variation of pore water pressure and its precursor significance for quicksand disasters due to mining near unconsolidated formations. Chin J Rock Mech Eng 27(9):1908–1916 Sui WH, Dong QH (2008) Variation of pore water pressure and its precursor significance for quicksand disasters due to mining near unconsolidated formations. Chin J Rock Mech Eng 27(9):1908–1916
28.
go back to reference Li B, Chen YL (2016) Risk assessment of coal floor water inrush from underlying aquifers based on GRA–AHP and its application. Geotech Geol Eng 34(1):143–154CrossRef Li B, Chen YL (2016) Risk assessment of coal floor water inrush from underlying aquifers based on GRA–AHP and its application. Geotech Geol Eng 34(1):143–154CrossRef
29.
go back to reference Wu Q, Zhang ZL, Ma JF (2007) A new practical methodology of the coal floor water bursting evaluating I: the master controlling index system construction. J China Coal Soc 32(1):42–47 Wu Q, Zhang ZL, Ma JF (2007) A new practical methodology of the coal floor water bursting evaluating I: the master controlling index system construction. J China Coal Soc 32(1):42–47
30.
go back to reference Liu WT, Zhang WQ, Li JX (2000) An evaluation of the safety of floor water-irruption using analytic hierarchy process and fuzzy synthesis methods. J China Coal Soc 25(3):278–282 Liu WT, Zhang WQ, Li JX (2000) An evaluation of the safety of floor water-irruption using analytic hierarchy process and fuzzy synthesis methods. J China Coal Soc 25(3):278–282
31.
go back to reference Li B, Wu Q (2015) An analysis of parameters sensitivity for vulnerability assessment of groundwater inrush during mining from underlying aquifers based on variable weight model. J Min Saf Eng 32(6):911–917 Li B, Wu Q (2015) An analysis of parameters sensitivity for vulnerability assessment of groundwater inrush during mining from underlying aquifers based on variable weight model. J Min Saf Eng 32(6):911–917
32.
go back to reference Wu Q, Liu Y, Liu D, Zhou W (2011) Prediction of floor water inrush: the application of GIS-based AHP vulnerable index method to Donghuantuo coal mine, China. Rock Mech Rock Eng 44(5):591–600CrossRef Wu Q, Liu Y, Liu D, Zhou W (2011) Prediction of floor water inrush: the application of GIS-based AHP vulnerable index method to Donghuantuo coal mine, China. Rock Mech Rock Eng 44(5):591–600CrossRef
33.
go back to reference Jia MK (2005) A new way of genetic classification on roof falling of bolt supporting roadway. J China Coal Soc 30(5):568–570 Jia MK (2005) A new way of genetic classification on roof falling of bolt supporting roadway. J China Coal Soc 30(5):568–570
34.
go back to reference Qian MG, Liu TC (1991) Mining pressure and strata control. China Coal Industry Publishing House, Xuzhou Qian MG, Liu TC (1991) Mining pressure and strata control. China Coal Industry Publishing House, Xuzhou
35.
go back to reference Wang CX, Wang HM (2004) Thinking about theories and practices on mine water control. Coal Geol Explor 32(11):100–103 Wang CX, Wang HM (2004) Thinking about theories and practices on mine water control. Coal Geol Explor 32(11):100–103
36.
go back to reference Liu TQ (1986) Safe extraction of near soft layer underlying a thick loose aquifer. Coal Sci Technol 13(2):14–18 Liu TQ (1986) Safe extraction of near soft layer underlying a thick loose aquifer. Coal Sci Technol 13(2):14–18
37.
go back to reference Yang YG, Yuan JF, Chen SZ (2006) R/S analysis and its application to the forecast of mine inflows. J China Univ Min Technol 16(4):425–428CrossRef Yang YG, Yuan JF, Chen SZ (2006) R/S analysis and its application to the forecast of mine inflows. J China Univ Min Technol 16(4):425–428CrossRef
38.
go back to reference Liu SC, Liu XM, Jiang ZH, Xing T, Chen MZ (2009) Research on electrical prediction for evaluating water conducting fracture zones in coal seam floor. Chin J Rock Mech Eng 28(2):348–355 Liu SC, Liu XM, Jiang ZH, Xing T, Chen MZ (2009) Research on electrical prediction for evaluating water conducting fracture zones in coal seam floor. Chin J Rock Mech Eng 28(2):348–355
39.
go back to reference Qiao W, Li WP, Sun RH, Li XQ, Hu G (2001) Formation mechanism of dynamic impact failure zone of super dynamic water inrush in coal mine. Chin J Geotech Eng 33(1):1726–1733 Qiao W, Li WP, Sun RH, Li XQ, Hu G (2001) Formation mechanism of dynamic impact failure zone of super dynamic water inrush in coal mine. Chin J Geotech Eng 33(1):1726–1733
40.
go back to reference YC X, Liu SQ (2011) Study on method to set safety coal and rock pillar for fully mechanized top coal caving mining under body. Coal Sci Technol 39(11):1–4 YC X, Liu SQ (2011) Study on method to set safety coal and rock pillar for fully mechanized top coal caving mining under body. Coal Sci Technol 39(11):1–4
41.
go back to reference Wu Q, Zhou W (2009) Prediction of groundwater inrush into coal mines from aquifers underlying the coal seams in China: application of vulnerability index method to Zhangcun Coal Mine, China. Environ Geol 57(5):1187–1195CrossRef Wu Q, Zhou W (2009) Prediction of groundwater inrush into coal mines from aquifers underlying the coal seams in China: application of vulnerability index method to Zhangcun Coal Mine, China. Environ Geol 57(5):1187–1195CrossRef
42.
go back to reference Yang TH, Shi WH, Li SC (2016) State of the art and trends of water-inrush mechanism of nonlinear flow in fractured rock mass. J China Coal Soc 41(7):1598–1609 Yang TH, Shi WH, Li SC (2016) State of the art and trends of water-inrush mechanism of nonlinear flow in fractured rock mass. J China Coal Soc 41(7):1598–1609
43.
go back to reference Coal Science Research Institute Beijing Mining (1981) Surface movement of coal mine and law of overburden rock fracture and its application. Coal Industry Publishing House, Beijing Coal Science Research Institute Beijing Mining (1981) Surface movement of coal mine and law of overburden rock fracture and its application. Coal Industry Publishing House, Beijing
44.
go back to reference Wang JM, DH Y (2010) Simulation of water hazards caused by burst of water cells formed. Chin J Geotech Eng 32(2):231–237 Wang JM, DH Y (2010) Simulation of water hazards caused by burst of water cells formed. Chin J Geotech Eng 32(2):231–237
45.
go back to reference Qiao W, Huang Y, Zb Y, Guo W, Zhou DK (2014) Formation and prevention of water inrush from roof bed separation with full-mechanized caving mining of ultra-thick coal seam. Chin J Rock Mech Eng 33(10):2076–2084 Qiao W, Huang Y, Zb Y, Guo W, Zhou DK (2014) Formation and prevention of water inrush from roof bed separation with full-mechanized caving mining of ultra-thick coal seam. Chin J Rock Mech Eng 33(10):2076–2084
46.
go back to reference Bense VF, Van D, Berg EH (2003) Deformation mechanisms and hydraulic properties of fault zones in unconsolidated sediments. Hydrogeol J 11(3):319–332CrossRef Bense VF, Van D, Berg EH (2003) Deformation mechanisms and hydraulic properties of fault zones in unconsolidated sediments. Hydrogeol J 11(3):319–332CrossRef
47.
go back to reference Fan LM, Ma XD, Jiang H (2016) Risk evaluation on water and sand inrush in ecologically fragile coal mine. J China Coal Soc 41(3):531–536 Fan LM, Ma XD, Jiang H (2016) Risk evaluation on water and sand inrush in ecologically fragile coal mine. J China Coal Soc 41(3):531–536
48.
go back to reference Zhu WB, Wang XZ, Kong X, Liu WT (2009) Study of mechanism of stope water inrush caused by water accumulation in overburden separation areas. Chin J Rock Mech Eng 28(2):306–311 Zhu WB, Wang XZ, Kong X, Liu WT (2009) Study of mechanism of stope water inrush caused by water accumulation in overburden separation areas. Chin J Rock Mech Eng 28(2):306–311
49.
go back to reference JL X, Zhu WB, Wang XZ (2011) Mechanism and criteria of crushing sand near loosening sand stone aquifer. J Min Saf Eng 8(3):333–339 JL X, Zhu WB, Wang XZ (2011) Mechanism and criteria of crushing sand near loosening sand stone aquifer. J Min Saf Eng 8(3):333–339
50.
go back to reference Gao YF (1996) Rock movement, “four-zone” model and dynamic displacement analysis. China Coal Society 21(1):23–25 Gao YF (1996) Rock movement, “four-zone” model and dynamic displacement analysis. China Coal Society 21(1):23–25
51.
go back to reference Li ZK, Hu J (2007) A study on working face roof dynamic separation water harness. Coal Geol China 19(2):35–38 Li ZK, Hu J (2007) A study on working face roof dynamic separation water harness. Coal Geol China 19(2):35–38
52.
go back to reference Xie XH, BY S, Gao YF, Duan XB (2005) Numerical study on water inrush above a confined aquifer in coal mining using hydro-fracturing. Chin J Rock Mech Eng 24(6):987–993 Xie XH, BY S, Gao YF, Duan XB (2005) Numerical study on water inrush above a confined aquifer in coal mining using hydro-fracturing. Chin J Rock Mech Eng 24(6):987–993
53.
go back to reference Yang TH, Tang CA, Tan ZH (2007) State of the art of inrush models in rock mass failure and developing trend for predication and forecast of ground water inrush. Chin J Rock Mech Eng 26(2):268–277 Yang TH, Tang CA, Tan ZH (2007) State of the art of inrush models in rock mass failure and developing trend for predication and forecast of ground water inrush. Chin J Rock Mech Eng 26(2):268–277
54.
go back to reference Wu Q, Zhu B, Li JM, Hong YQ, Qian ZJ (2008) Numerical simulation of lagging water-inrush mechanism of rock roads near fault zone. J China Univ Min Technol 37(6):780–785 Wu Q, Zhu B, Li JM, Hong YQ, Qian ZJ (2008) Numerical simulation of lagging water-inrush mechanism of rock roads near fault zone. J China Univ Min Technol 37(6):780–785
55.
go back to reference Wen-hong LV (2014) Measure and simulation for development height of water conducted crack zone in overburden roof. J Xi’an Univ Sci Technol 03:309–313 Wen-hong LV (2014) Measure and simulation for development height of water conducted crack zone in overburden roof. J Xi’an Univ Sci Technol 03:309–313
56.
go back to reference Liang YP, Wen GC (2000) Comprehensive analysis method of “three-zone” classification on mine roof strata. Coal Sci Technol 28(5):39–42 Liang YP, Wen GC (2000) Comprehensive analysis method of “three-zone” classification on mine roof strata. Coal Sci Technol 28(5):39–42
57.
go back to reference XJ H, Li WP, Cao DT (2012) Index of multiple factors and expected height of fully mechanized water flowing fractured zone. J China Coal Soc 37(4):613–620 XJ H, Li WP, Cao DT (2012) Index of multiple factors and expected height of fully mechanized water flowing fractured zone. J China Coal Soc 37(4):613–620
58.
go back to reference Wu Q, Liu YZ, Luo LH, Liu SQ, Sun WJ, Zeng YF (2015) Quantitative evaluation and prediction of water inrush vulnerability from aquifers overlying coal seams in Donghuantuo coal mine, China. Environ Earth Sci 74(2):1429–1437CrossRef Wu Q, Liu YZ, Luo LH, Liu SQ, Sun WJ, Zeng YF (2015) Quantitative evaluation and prediction of water inrush vulnerability from aquifers overlying coal seams in Donghuantuo coal mine, China. Environ Earth Sci 74(2):1429–1437CrossRef
59.
go back to reference Zhang Y, Pang YH (2010) Water-inrush mechanical model based on a theory of coupled stress-seepage. J China Univ Min Technol 39(5):659–664 Zhang Y, Pang YH (2010) Water-inrush mechanical model based on a theory of coupled stress-seepage. J China Univ Min Technol 39(5):659–664
60.
go back to reference Zhang ZL, Gao YF, Wu Q, Wei SM (2013) Discussion on the technical system of solid prevention and control on mining flooding. J China Coal Soc 38(3):378–383 Zhang ZL, Gao YF, Wu Q, Wei SM (2013) Discussion on the technical system of solid prevention and control on mining flooding. J China Coal Soc 38(3):378–383
61.
go back to reference Liu ZJ, YQ H (2007) Solid-liquid coupling study on water inrush through faults in coal mining above confined aquifer. J China Coal Soc 32(10):1046–1050 Liu ZJ, YQ H (2007) Solid-liquid coupling study on water inrush through faults in coal mining above confined aquifer. J China Coal Soc 32(10):1046–1050
62.
go back to reference YC X, Li JB (2014) “Pore-fractured lifting type” mechanical model for floor water inrush of the grouting enforcement working face. J China Univ Min Technol 43(1):49–55 YC X, Li JB (2014) “Pore-fractured lifting type” mechanical model for floor water inrush of the grouting enforcement working face. J China Univ Min Technol 43(1):49–55
63.
go back to reference Shi LQ, Han J (2004) Floor water-inrush mechanism and prediction. China University of Mining and Technology Press, Xuzhou Shi LQ, Han J (2004) Floor water-inrush mechanism and prediction. China University of Mining and Technology Press, Xuzhou
64.
go back to reference Wu Q, Zhou YJ, Liu JT, Zhong YP, Yin ZR, JM LI, Hong YQ, Zhou RG (2003) The mechanical experiment study on lag mechanism of water-bursting of fault under coal seam. J China Coal Soc 28(6):561–565 Wu Q, Zhou YJ, Liu JT, Zhong YP, Yin ZR, JM LI, Hong YQ, Zhou RG (2003) The mechanical experiment study on lag mechanism of water-bursting of fault under coal seam. J China Coal Soc 28(6):561–565
65.
go back to reference Zhang JC, Zhang YZ, Liu TQ (1997) Rock mass permeability and coal mine water inrush. Geological Publishing House, Beijing Zhang JC, Zhang YZ, Liu TQ (1997) Rock mass permeability and coal mine water inrush. Geological Publishing House, Beijing
66.
go back to reference Feng MM, Mao XB, Bai HB, Wang P (2009) Experimental research on fracture evolution law of water-resisting strata in coal seam floor above aquifer. Chin J Rock Mech Eng 28(2):336–341 Feng MM, Mao XB, Bai HB, Wang P (2009) Experimental research on fracture evolution law of water-resisting strata in coal seam floor above aquifer. Chin J Rock Mech Eng 28(2):336–341
67.
go back to reference ZM X (2011) Mining-induced floor failure and the model, precursor and prevention of confined water inrush with high pressure in deep mining. J China Coal Soc 36(8):1422–1424 ZM X (2011) Mining-induced floor failure and the model, precursor and prevention of confined water inrush with high pressure in deep mining. J China Coal Soc 36(8):1422–1424
68.
go back to reference Zhao YS, Hu YQ (2004) Theory and technology of coal mine on the confined aquifer. China Coal Industry Publishing House, Beijing Zhao YS, Hu YQ (2004) Theory and technology of coal mine on the confined aquifer. China Coal Industry Publishing House, Beijing
69.
go back to reference Zhou W (1997) Paleocollapse structure as a passageway for groundwater flow and contaminant transport. Environ Geol 32(4):251–257CrossRef Zhou W (1997) Paleocollapse structure as a passageway for groundwater flow and contaminant transport. Environ Geol 32(4):251–257CrossRef
70.
go back to reference Luo LP, Peng SP (2005) Mechanism study on water-inrush hazard of floor strata in mining on confined aquifer. J China Coal Soc 30(4):439–462 Luo LP, Peng SP (2005) Mechanism study on water-inrush hazard of floor strata in mining on confined aquifer. J China Coal Soc 30(4):439–462
71.
go back to reference Wu Q, Pang W, Dai YC, Yu J (2006) Vulnerability forecasting model based on coupling technique of GIS and ANN in floor ground water bursting. J China Coal Soc 31(3):314–319 Wu Q, Pang W, Dai YC, Yu J (2006) Vulnerability forecasting model based on coupling technique of GIS and ANN in floor ground water bursting. J China Coal Soc 31(3):314–319
72.
go back to reference Moutsopoulos KN, Papaspyros J, Tsihrintzis VA (2009) Experimental investigation of inertial flow processes in porous media. J Hydrol 374(3–4):242–254CrossRef Moutsopoulos KN, Papaspyros J, Tsihrintzis VA (2009) Experimental investigation of inertial flow processes in porous media. J Hydrol 374(3–4):242–254CrossRef
73.
go back to reference Jiang QM (2009) Coal floor strata failure depth test of working face at big mining depth. Coal Geol Explor 37(4):30–33 Jiang QM (2009) Coal floor strata failure depth test of working face at big mining depth. Coal Geol Explor 37(4):30–33
74.
go back to reference Zhu SY, YJ J, Zhao ZZ (2009) Field measurement study on deformation and destruction of “three-soft” coal seam floor of Chaohua coal mine. J Geotech Eng 31(4):639–642 Zhu SY, YJ J, Zhao ZZ (2009) Field measurement study on deformation and destruction of “three-soft” coal seam floor of Chaohua coal mine. J Geotech Eng 31(4):639–642
75.
go back to reference ZM X, Sun YJ, Dong QH, Zhu ZK (2012) Closing mechanism of mining-induced fracture in coal mine aquifuge and its application. J Min Saf Eng 29(5):613–618 ZM X, Sun YJ, Dong QH, Zhu ZK (2012) Closing mechanism of mining-induced fracture in coal mine aquifuge and its application. J Min Saf Eng 29(5):613–618
76.
go back to reference Yin SX, Wu Q, Wang SX (2004) Studies on characters and forming mechanism of karstic collapse columns at mine area of north China. Chin J Rock Mech Eng 23(1):120–123 Yin SX, Wu Q, Wang SX (2004) Studies on characters and forming mechanism of karstic collapse columns at mine area of north China. Chin J Rock Mech Eng 23(1):120–123
77.
go back to reference WK B, Mao XB (2009) Research on effect of fault dip on fault activation and water inrush of coal floor. Chin J Rock Mech Eng 28(2):386–394 WK B, Mao XB (2009) Research on effect of fault dip on fault activation and water inrush of coal floor. Chin J Rock Mech Eng 28(2):386–394
78.
go back to reference Hosseini N, Oraee K, Shahriar K, Goshtasbi K (2013) Studying the stress redistribution around the longwall mining panel using passive seismic velocity tomography and geostatistical estimation. Arab J Geosci 6(5):1407–1416CrossRef Hosseini N, Oraee K, Shahriar K, Goshtasbi K (2013) Studying the stress redistribution around the longwall mining panel using passive seismic velocity tomography and geostatistical estimation. Arab J Geosci 6(5):1407–1416CrossRef
79.
go back to reference Qian MG, Miao XX, Xu JL (2000) Key strata theory in ground control. China University of Mining and Technology Press, Beijing Qian MG, Miao XX, Xu JL (2000) Key strata theory in ground control. China University of Mining and Technology Press, Beijing
80.
go back to reference Wu Q, Zhao SQ, Sun WJ, Cui FP, Wu C (2013) Classification of the hydrogeological type of coal mine and analysis of its characteristics in China. J China Coal Soc 38(6):901–905 Wu Q, Zhao SQ, Sun WJ, Cui FP, Wu C (2013) Classification of the hydrogeological type of coal mine and analysis of its characteristics in China. J China Coal Soc 38(6):901–905
81.
go back to reference Guan ET (2012) Origin of water bursting coefficient and process of modification. Coal Geol China 24(2):30–32 Guan ET (2012) Origin of water bursting coefficient and process of modification. Coal Geol China 24(2):30–32
82.
go back to reference Wang YH, Shen W (1996) Prevention and control of China coal mine flooding. China Coal Industry Publishing House, Beijing Wang YH, Shen W (1996) Prevention and control of China coal mine flooding. China Coal Industry Publishing House, Beijing
83.
go back to reference Santos CF, Bieniawski ZT (1967) Floor design in underground coalmines. Rock Mech Rock Eng 22(4):249–271CrossRef Santos CF, Bieniawski ZT (1967) Floor design in underground coalmines. Rock Mech Rock Eng 22(4):249–271CrossRef
84.
go back to reference Li BY (1999) “Down Three Zones” in the prediction of the water inrush from coalbed floor aquifer-theory, development and application. J Shandong Inst Min Technol (Nat Sci) 18(4):11–18 Li BY (1999) “Down Three Zones” in the prediction of the water inrush from coalbed floor aquifer-theory, development and application. J Shandong Inst Min Technol (Nat Sci) 18(4):11–18
85.
go back to reference Bense VF, Van den Berg EH, Van Balen RT (2003) Deformation mechanisms and hydraulic properties of fault zones in unconsolidated sediments; the Roer Valley Rift System, The Netherlands. Hydrogeol J 11(3):319–332CrossRef Bense VF, Van den Berg EH, Van Balen RT (2003) Deformation mechanisms and hydraulic properties of fault zones in unconsolidated sediments; the Roer Valley Rift System, The Netherlands. Hydrogeol J 11(3):319–332CrossRef
86.
go back to reference Qian MG, Miao XX, JL X (1996) Theoretical study of key stratum in ground control. J China Coal Soc 21(3):225–230 Qian MG, Miao XX, JL X (1996) Theoretical study of key stratum in ground control. J China Coal Soc 21(3):225–230
87.
go back to reference Wang ZY, Liu HQ (1993) Mining in confined aquifer. China Coal Industry Publishing House, Beijing Wang ZY, Liu HQ (1993) Mining in confined aquifer. China Coal Industry Publishing House, Beijing
88.
go back to reference Shi LQ (2009) Summary of research on mechanism of water inrush from seam floor. J Shandong Univ Sci Technol 28(3):17–23 Shi LQ (2009) Summary of research on mechanism of water inrush from seam floor. J Shandong Univ Sci Technol 28(3):17–23
89.
go back to reference Zhou W, Li GY (2001) Geological barrier– a natural rock stratum for preventing confined karst water from flowing into mines in North China. Environ Geol 40(8):1003–1009CrossRef Zhou W, Li GY (2001) Geological barrier– a natural rock stratum for preventing confined karst water from flowing into mines in North China. Environ Geol 40(8):1003–1009CrossRef
90.
go back to reference Xie GX, Chang JC, Hua XZ (2007) Influence of mining velocity on mechanical characteristics of surrounding rock in fully mechanized top-coal caving face. Chin J Geotech Eng 29(7):963–967 Xie GX, Chang JC, Hua XZ (2007) Influence of mining velocity on mechanical characteristics of surrounding rock in fully mechanized top-coal caving face. Chin J Geotech Eng 29(7):963–967
91.
go back to reference Nelson EP, Kullman AJ, Gardner MH, Batzle M (1999) Fault-fracture networks and related fluid flow and sealing, brushy canyon formation, West Texas. Faults Subsurf Fluid Flow Shallow Crust 21(3):69–81CrossRef Nelson EP, Kullman AJ, Gardner MH, Batzle M (1999) Fault-fracture networks and related fluid flow and sealing, brushy canyon formation, West Texas. Faults Subsurf Fluid Flow Shallow Crust 21(3):69–81CrossRef
92.
go back to reference Motyka J, Pulido-Bosch A (1985) Karstic phenomena in calcareous-dolomitic rocks and their influence over the inrushes of water in lead-zinc mines in Olkusz region (south of Poland). Int J Mine Water 4(2):1–11CrossRef Motyka J, Pulido-Bosch A (1985) Karstic phenomena in calcareous-dolomitic rocks and their influence over the inrushes of water in lead-zinc mines in Olkusz region (south of Poland). Int J Mine Water 4(2):1–11CrossRef
93.
go back to reference He MC, Xie HP, Peng SP, Jiang YD (2005) Study on rock mechanics in deep mining engineering. Chin J Rock Mech Eng 24(16):2803–2813 He MC, Xie HP, Peng SP, Jiang YD (2005) Study on rock mechanics in deep mining engineering. Chin J Rock Mech Eng 24(16):2803–2813
94.
go back to reference Noghabai K (1999) Discrete versus smeared versus element-embedded crack models on ring problem. J Eng Mech 125(6):307–314CrossRef Noghabai K (1999) Discrete versus smeared versus element-embedded crack models on ring problem. J Eng Mech 125(6):307–314CrossRef
95.
go back to reference Kuznetsov SV, Trofimov VA (2002) Hydrodynamic effect of coal seam compression. J Min Sci 39(3):205–212CrossRef Kuznetsov SV, Trofimov VA (2002) Hydrodynamic effect of coal seam compression. J Min Sci 39(3):205–212CrossRef
96.
go back to reference Wolkersdorfer C, Bowell R (2005) Contemporary reviews of mine water studies in Europe. Mine Water Environ 24(1):2–37CrossRef Wolkersdorfer C, Bowell R (2005) Contemporary reviews of mine water studies in Europe. Mine Water Environ 24(1):2–37CrossRef
97.
go back to reference Wu Q, Wang M, Wu X (2004) Investigations of groundwater bursting into coal mine seam floors from fault zones. Int J Rock Mech Min Sci 41(4):557–571CrossRef Wu Q, Wang M, Wu X (2004) Investigations of groundwater bursting into coal mine seam floors from fault zones. Int J Rock Mech Min Sci 41(4):557–571CrossRef
98.
go back to reference Wu Q, Yang L, Zhu B (2009) Application of vulnerability index method in coal floor water bursting evaluation in Zhaogezhuang coalmine. Coal Geol China 21(6):40–44 Wu Q, Yang L, Zhu B (2009) Application of vulnerability index method in coal floor water bursting evaluation in Zhaogezhuang coalmine. Coal Geol China 21(6):40–44
99.
go back to reference Wu Q, Wang JH, Liu DH, Cui FP, Liu SQ (2009) A new practical methodology of the coal floor water bursting evaluating IV:the application of AHP vulnerable index method based on GIS. J China Coal Soc 34(2):231–238 Wu Q, Wang JH, Liu DH, Cui FP, Liu SQ (2009) A new practical methodology of the coal floor water bursting evaluating IV:the application of AHP vulnerable index method based on GIS. J China Coal Soc 34(2):231–238
100.
go back to reference Wu Q, Li B, Liu SQ (2013) Vulnerability assessment of coal floor groundwater bursting based on zoning variable weight model: a case study in the typical mining region of Kailuan. J China Coal Soc 38(9):1516–1521 Wu Q, Li B, Liu SQ (2013) Vulnerability assessment of coal floor groundwater bursting based on zoning variable weight model: a case study in the typical mining region of Kailuan. J China Coal Soc 38(9):1516–1521
101.
go back to reference Wu Q, Xu K, Zhang W (2016) Further research on “three maps-two predictions” method for prediction on coal seam roof water bursting risk. J China Coal Soc 41(6):1341–1347 Wu Q, Xu K, Zhang W (2016) Further research on “three maps-two predictions” method for prediction on coal seam roof water bursting risk. J China Coal Soc 41(6):1341–1347
102.
go back to reference Wu Q, Huang XL, Dong D, Yin ZR, Li JM, Hong YQ, Zhang HJ (2000) “Three maps-two predictions” method to evaluate water bursting conditions on roof coal. J China Coal Soc 25(1):62–67 Wu Q, Huang XL, Dong D, Yin ZR, Li JM, Hong YQ, Zhang HJ (2000) “Three maps-two predictions” method to evaluate water bursting conditions on roof coal. J China Coal Soc 25(1):62–67
103.
go back to reference Wu Q (2014) Progress, problems and prospects of prevention and control technology of mine water and reutilization in China. J China Coal Soc 39(5):795–805 Wu Q (2014) Progress, problems and prospects of prevention and control technology of mine water and reutilization in China. J China Coal Soc 39(5):795–805
104.
go back to reference Qiang W, Li D (2006) Management of karst water resources in mining area: dewatering in mines and demand for water supply in the Dongshan mine of Taiyuan, Shanxi Province, North China. Environ Geol 50(8):1107–1117CrossRef Qiang W, Li D (2006) Management of karst water resources in mining area: dewatering in mines and demand for water supply in the Dongshan mine of Taiyuan, Shanxi Province, North China. Environ Geol 50(8):1107–1117CrossRef
105.
go back to reference Wu Q, Zhou WF, Li D, Di ZQ, Miao Y (2006) Management of karst water resources in mining area: dewatering in mines and demand for water supply in the Dongshan mine of Taiyuan, Shanxi Province, North China. Environ Geol 50(8):1107–1117CrossRef Wu Q, Zhou WF, Li D, Di ZQ, Miao Y (2006) Management of karst water resources in mining area: dewatering in mines and demand for water supply in the Dongshan mine of Taiyuan, Shanxi Province, North China. Environ Geol 50(8):1107–1117CrossRef
106.
go back to reference Zhang HR, Zhang WQ, Wen XL, Wang C (2000) Design of continuous observation work on mining failure feature in the floor of mine and its practice. Min Res Dev 20(4):1–4 Zhang HR, Zhang WQ, Wen XL, Wang C (2000) Design of continuous observation work on mining failure feature in the floor of mine and its practice. Min Res Dev 20(4):1–4
107.
go back to reference Li HT, Lei BL, Yang GM (2005) Development progress and prospect of China mine geological safety guarantee system. Coal Geol Explor 33(Suppl):9–13 Li HT, Lei BL, Yang GM (2005) Development progress and prospect of China mine geological safety guarantee system. Coal Geol Explor 33(Suppl):9–13
108.
go back to reference Zhang BL, Guo WJ, Zhang XG, Shen BT, Zhang T, Kong H (2016) Development and application of analogue testing system for floor confined water rise in coal mining. J China Coal Soc 41(8):2057–2062 Zhang BL, Guo WJ, Zhang XG, Shen BT, Zhang T, Kong H (2016) Development and application of analogue testing system for floor confined water rise in coal mining. J China Coal Soc 41(8):2057–2062
109.
go back to reference Dong SN (2010) Some key scientific problems on water hazards frequently happened in China’s coal mines. J China Coal Soc 35(1):66–71 Dong SN (2010) Some key scientific problems on water hazards frequently happened in China’s coal mines. J China Coal Soc 35(1):66–71
110.
go back to reference Chmitt DR, Zoback MD (1989) Poroelastic effects in the determination of the maximum horizontal principal stress in hydraulic fracturing tests-a proposed breakdown equation employing a modified effective stress relation for tensile failure. Int J Rock Mech Min Sci Geomech Abstr 26(6):499–506CrossRef Chmitt DR, Zoback MD (1989) Poroelastic effects in the determination of the maximum horizontal principal stress in hydraulic fracturing tests-a proposed breakdown equation employing a modified effective stress relation for tensile failure. Int J Rock Mech Min Sci Geomech Abstr 26(6):499–506CrossRef
111.
go back to reference Wu Q, Dong DL, Shi ZH, Xiong W, Sun WD, Ye GJ, Li SW, Liu JT (1999) Study on the optimized combination of drainage – water supply – eco – environmental trinity in North China coalfield. Sci China Earth Sci 29(6):567–573 Wu Q, Dong DL, Shi ZH, Xiong W, Sun WD, Ye GJ, Li SW, Liu JT (1999) Study on the optimized combination of drainage – water supply – eco – environmental trinity in North China coalfield. Sci China Earth Sci 29(6):567–573
112.
go back to reference Wu Q, Wang ZQ, Guo ZK, Zhang DY, Chen YJ, Zhao PF, Chen Y, Wang TJ, Liu C, Wang Y (2010) A research on an optimized five-in-one combination of mine water control, treatment, utilization, back-filling and environment friendly treatment. China Coal 36(2):109–112 Wu Q, Wang ZQ, Guo ZK, Zhang DY, Chen YJ, Zhao PF, Chen Y, Wang TJ, Liu C, Wang Y (2010) A research on an optimized five-in-one combination of mine water control, treatment, utilization, back-filling and environment friendly treatment. China Coal 36(2):109–112
113.
go back to reference Duan HF, Jiang ZQ, Wang YD, Shao MX, Zhao LJ, Zhu QL (2012) Rock expansion boundary anti-permeability strength and its application in the coal mine floor water inrush evaluation. J Min Saf Eng 29(1):95–99 Duan HF, Jiang ZQ, Wang YD, Shao MX, Zhao LJ, Zhu QL (2012) Rock expansion boundary anti-permeability strength and its application in the coal mine floor water inrush evaluation. J Min Saf Eng 29(1):95–99
114.
go back to reference ST G, Jiang BY, Wang CQ, Li NN (2013) Simulation research on overburden failure and lead abutment pressure distribution of fully-mechanized sublevel caving face. Min Res Develop 33(3):13–14 ST G, Jiang BY, Wang CQ, Li NN (2013) Simulation research on overburden failure and lead abutment pressure distribution of fully-mechanized sublevel caving face. Min Res Develop 33(3):13–14
115.
go back to reference Tian J, Han G, YJ W, Wu M (2006) Status of pilot probing technology for blind heading. Coal Sci Technol 34(8):17–20 Tian J, Han G, YJ W, Wu M (2006) Status of pilot probing technology for blind heading. Coal Sci Technol 34(8):17–20
116.
go back to reference Qi CS (2005) Underground engineering geological prediction technology tunnel construction. Tunnel Constr 25(3):9–12 Qi CS (2005) Underground engineering geological prediction technology tunnel construction. Tunnel Constr 25(3):9–12
117.
go back to reference Liu SD, Guo LQ (2007) MSP technology and the application of detecting small geologic structure in coalmine lane way. J Anhui Univ Sci Technol (Nat Sci Ed) 27(S1):22–25 Liu SD, Guo LQ (2007) MSP technology and the application of detecting small geologic structure in coalmine lane way. J Anhui Univ Sci Technol (Nat Sci Ed) 27(S1):22–25
118.
go back to reference Liu SC, Yue JH, Liu ZX (2005) Hydrogeophysical exploration technique and application in coal seams. China University of Mining and Technology Press, Xuzhou Liu SC, Yue JH, Liu ZX (2005) Hydrogeophysical exploration technique and application in coal seams. China University of Mining and Technology Press, Xuzhou
119.
go back to reference Yan XL, Chen XH, Yan XY (2011) Analysis on microseismic law when fully mechanized coalface passed through fault. J China Coal Soc 36(S1):83–87 Yan XL, Chen XH, Yan XY (2011) Analysis on microseismic law when fully mechanized coalface passed through fault. J China Coal Soc 36(S1):83–87
120.
go back to reference Zheng C, Yang TH, Yu QL, Zhang PH, Liu HL, Zhang SJ (2012) Stability evaluation of excavated rock mass in mines based on microseismic monitoring. J China Coal Soc 37(S2):280–286 Zheng C, Yang TH, Yu QL, Zhang PH, Liu HL, Zhang SJ (2012) Stability evaluation of excavated rock mass in mines based on microseismic monitoring. J China Coal Soc 37(S2):280–286
121.
go back to reference Zhang PS, Liu SD, Wu RX, Cao Y (2009) Dynamic detection of overburden deformation and failure in mining workface by 3D resistivity method. Chin J Rock Mech Eng 28(9):1870–1875 Zhang PS, Liu SD, Wu RX, Cao Y (2009) Dynamic detection of overburden deformation and failure in mining workface by 3D resistivity method. Chin J Rock Mech Eng 28(9):1870–1875
Metadata
Title
Mine Water Inrush
Authors
Qiang Wu
Shuning Dong
Bo Li
Wanfang Zhou
Copyright Year
2019
Publisher
Springer US
DOI
https://doi.org/10.1007/978-1-4939-8787-0_967