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《Journal of Hebei North University(Natural Science Edition)》 2019-03
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Application of Multivariate Matrix Model in Water Inrush Identification of Mine

ZHANG Jun;YAO Duo-xi;JIANG Zheng;SU Yue;School of Civil Engineering,Wanjiang University of Technology;School of Earth and Environmental Science,Anhui University of Science and Technology;  
Objective With the development of coal mining to the deep,a series of coal mine safety problems have been followed,and the prevention and control of coal mine water disasters has become increasingly difficult.To reduce the occurrence of mine accidents,the first thing to do is identify the water source of the coal mine.Methods By taking Renlou Coal Mine in northern Anhui as an example,seven conventional hydrochemical indexes of Ca~(2+),Mg~(2+),Na~++K~+,Cl~-,SO_4~(2-),HCO_3~- and TDS were selected,and a multivariate matrix model for identifying mine water source was established.Results By taking the ion combination of Ca~(2+),Mg~(2+) and Na~++K~+ as an example,the possibilities of water bursting water belonging to the fourth aquifer,coal bearing sandstone aquifer,taiyuan formation limestone aquifer and ordovician limestone aquifer were-0.067 8,0.867 3,-0.013 8 and 0.213 7,respectively.So,the combination showed that the source of water bursting water was coal bearing sandstone aquifer.Through the calculation of other groups of ions,the source of water inrush was judged similarly.In Renlou Coal Mine,the mine water bursting sources derived from coal bearing sandstone aquifer had 28 group,from the fourth aquifer 3 groups,and from the ordovician limestone aquifer have 3 groups.Only one group came from taiyuan formation limestone aquife,and average value in group also showed that the water inrush sources came from coal water.Conclusion The principle of the model is simple and the number of water samples and indexes is less limited,but the recognition effect is ideal.The identification rate of water inrush is higher in Renlou Mine,which can be popularized and applied in coal mine prevention and control work.
【Fund】: 国家自然科学基金项目:“岩层组合结构对底板采动破坏及突水危险性的制约研究”(51474008);; 河海大学文天学院科研项目:“皖北矿区矿井水文地质条件及突水水源判别”(WT16006);河海大学文天学院科研项目:“煤系岩体参数取值及其应用研究”(WT17012);; 皖江工学院科研项目:“采动条件下煤层底板变形破坏特征研究”(WG18026)
【CateGory Index】: TD745
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