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综合物探的奥陶系灰岩突水预警技术
引用本文:李松营,李书文. 综合物探的奥陶系灰岩突水预警技术[J]. 焦作工学院学报, 2013, 0(5): 552-555
作者姓名:李松营  李书文
作者单位:[1]中国矿业大学北京地球科学与测绘工程学院,北京100083 [2].义马煤业集团股份有限公司地质研究所,河南义马472300 [3]义马煤业集团股份有限公司新安煤矿,河南新安471842
基金项目:国家自然科学基金重点资助项目(41130419); 河南省外国专家局项目(20124100081)
摘    要:为克服单一物探手段的局限,更准确地预测奥陶系灰岩突水风险,新安煤矿13151工作面采用瞬变电磁、直流电法、槽波地震和无线电波坑透等4种手段进行了综合物探.经比对物探结果,并结合地质与水文地质资料分析,4种物探异常区的重叠区域奥陶系灰岩水向上导升,低阻区条带分布,存在突水危险;煤厚变薄,可能受剪切滑动构造影响;槽波波速1 800 m/s以上,地应力(矿压)集中,利于围岩破坏.多种物探异常区的重叠区域的突水风险最大,是工作面防治水工作的重点.实例证明,综合物探可以弥补单一物探方法之不足,有效指导钻探验证、底板注浆及突水治理工作.

关 键 词:综合物探  瞬变电磁  槽波地震  直流电法  无线电波坑透  突水预警

Comprehensive geophysical exploration technology for early warning in ordovician limestone water inrush
LI Song-ying;LI Shu-wen. Comprehensive geophysical exploration technology for early warning in ordovician limestone water inrush[J]. Journal of Jiaozuo Institute of Technology(Natural Science), 2013, 0(5): 552-555
Authors:LI Song-ying  LI Shu-wen
Affiliation:LI Song-ying;LI Shu-wen;College of Geosciences and Surveying Engineering,China University of Mining and Technology(Beijing);Geological Institute,Yima Coal Industry Group Co.,Ltd.;Xin'an Coalmine,Yima Coal Group Co. Ltd.;
Abstract:In order to overcome the limitations of a single geophysical method,and to predict the risk of Ordovician water inrush more accurately,4 geophysical exploration means(transient electromagnetic method(TEM),DC method,in-seam seismic survey(ISS) and electric-magnetic pit-conveying) were used in 13151 working face in a Xin'an coal mine.Geophysical exploration results show that the Ordovician limestone water rose up in a low resistivity zone with shortage effective thickness of aquiclude; that the thin seam area could be affected by a shear sliding structure; that the ground stress(mine pressure) concentrated in a high wave velocity area(more than 2300 m/s) in which the surrounding rock was easily destructed.The overlapping region of an abnormal area has a high risk for water inrush,where is the key of water controlling in a mining face.
Keywords:comprehensive geophysical exploration  transient electromagnetic  in-seam seismic  DC method  electric-magnetic pit-conveying  water inrush warning
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