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作 者:丁耀龙 Ding Yaolong(Shanxi Huayang Group New Energy Co.,Ltd.,Yangquan 045000,China)
机构地区:[1]山西华阳集团新能股份有限公司,山西阳泉045000
出 处:《煤炭与化工》2025年第4期62-66,共5页Coal and Chemical Industry
摘 要:为了快速高效的探测华阳集团平舒公司15206智能化采煤工作面的地质构造,保证工作面的安全生产,通过分析工作面的地质和水文地质资料,采用动态高精度无线电波透视技术工作面进行探测,共计探测出3个异常区,工作面回采过程中验证了E1异常区为X172陷落柱和落差为1.1 m的逆断层所致,E2异常区为X177陷落柱所致,E3异常区为X155陷落柱所致。探测结果表明动态高精度无线电波透视技术能够提高探测速度和精度,为后续开采工作面开采前实施物探探测提供了技术经验。In order to quickly and efficiently detect the geological structure of No.15206 intelligent coal mining face of Huayang Group Pingshu Company and ensure the safe production of the working face,through the analysis of the geological and hydrogeological data of the working face,the dynamic high-precision radio wave perspective technology was used to detect the working face,and a total of three abnormal areas were detected.During the mining process of the working face,it was verified that the E1 abnormal area was caused by the X172 collapse column and the reverse fault with a drop of 1.1 m.The E2 abnormal area was caused by the X177 collapse column,and the E3 abnormal area was caused by the X155 collapse column.The detection results showed that the dynamic high-precision radio wave perspective technology could improve the detection speed and accuracy,and provide technical experience for the implementation of geophysical exploration before the mining of the subsequent mining face.
关 键 词:地质构造 动态高精度无线电波透视 水害防治
分 类 号:TD74[矿业工程—矿井通风与安全]
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