Application of comprehensive exploration technology for water-hazard prevention in coal mine working face
-
摘要: 现有煤矿工作面水害复合勘探技术大多采用常规回转钻进成孔方法,钻孔数量多、工作量大,且施工过程中钻杆弯曲变形、孔内地层变化、钻进工艺参数改变等会导致钻孔发生偏斜,从而导致探水决策失误。针对该问题,提出一种基于定向钻进的复合勘探技术,并将其应用于某煤矿综采工作面水害探测。应用过程如下:先采用矿井音频电透技术探测工作面低视电阻率异常区,再采用定向钻进技术直接揭露富水区,通过观测钻孔涌水量和化验钻孔涌水水质,确定异常区存在导水奥灰岩溶陷落柱,并圈定了陷落柱在该工作面内的延展状态和边界;根据复合勘探结果,指导更改切眼位置,有效消除了工作面开采揭露导水陷落柱导致突水事故的隐患。Abstract: Most of existing comprehensive exploration technologies for water-hazard on coal mine working face adopt conventional rotary drilling method with lots of boreholes and heavy workload. In addition, blending deformation of drill pipes, geological condition variation in boreholes and alterations of drilling parameters during construction process would lead to borehole deflection, which may cause wrong decision about water-hazard exploration. For above problems, a comprehensive exploration technology based on directional drilling was proposed and applied to water-hazard detection on fully mechanized mining face of a coal mine. The application process is as follows: Firstly, mine audio-frequency electric penetration technology is used in the comprehensive exploration technology to detect anomalous area with low apparent resistivity on the working face, and then directional drilling technology is adopted to directly expose water-rich zone. It is determined that there is a water-conductive collapse column of Ordovician limestone karst in the anomalous area through observing water gushing in the boreholes and chemically examine quality of the water. Meanwhile, extension state and boundary of the water-conductive collapse column in the working face are delineated. Position of open-off cut is redesigned according to comprehensive exploration results, so as to effectively eliminate hidden water-inrush danger caused by exposing the water-conductive collapse column during mining process.
-
-
期刊类型引用(9)
1. 张岩,汪进超,刘厚成,郭启军. 基于定向声波扫描的钻孔围岩隐伏溶洞表征与分析方法. 岩土力学. 2024(05): 1435-1445 . 百度学术
2. 王玉国,李延辉,张义安. 瞬变电磁法多点交叉勘探煤矿断层有效性实验分析. 能源与环保. 2023(03): 13-18+39 . 百度学术
3. 刘鹏程. 虎龙沟煤矿81517工作面顶底板富水性探测. 江西煤炭科技. 2023(04): 152-155 . 百度学术
4. 罗钦钊,朱永峰. 煤矿地质防治水中定向钻技术的应用. 矿业装备. 2023(12): 170-172 . 百度学术
5. 郭新根. 矿井物探技术在突水预测中的应用研究. 山西冶金. 2022(02): 320-322 . 百度学术
6. 冯聪聪. 综采工作面底板隐伏导水陷落柱防治水技术研究. 山西化工. 2021(02): 98-99+105 . 百度学术
7. 王庆. 准格尔矿区煤矿井下水害综合防治技术. 煤矿安全. 2021(06): 104-108 . 百度学术
8. 张历平. 试论水文地质对煤矿防治水的重要性. 中国石油和化工标准与质量. 2020(09): 109-110 . 百度学术
9. 张震. 桑树坪二号井顶底板水害超前探查与治理技术研究. 煤炭与化工. 2020(09): 43-46 . 百度学术
其他类型引用(1)
计量
- 文章访问数: 99
- HTML全文浏览量: 16
- PDF下载量: 16
- 被引次数: 10