桑树坪煤矿奥灰水动态监测管理系统方案设计与验证
[Abstract]:After nearly a century of coal mining in China, the mining of most coal mines has entered deep strata, and mine water damage has a great impact on coal mine production. At present, 15 billion tons of coal reserves are threatened by karst water. It is necessary to collect and deal with the hydrogeological information of coal mine in order to extract the coal which is threatened by karst water safely. Therefore, it is of great significance to accurately detect the water-rich floor of mining face for the realization of coal mine safety and efficient production. The water-rich detection of roadway floor in mining face needs real time, fast and real-time geophysical exploration method which can analyze the detection data instantly. According to the demand of mine floor water hazard prevention in coal mine field work in our country, we need to develop a light, simple, real time and professional mine water hazard information management system, which can realize all mine roadway floor and roof in the whole company. Head-on structure and prediction of water enrichment. Using advanced computer technology, geophysical detection technology and data communication technology, based on the internal network platform of the enterprise, the dynamic monitoring and management system of Ordovician ash water in Sangshuping Coal Mine is studied and developed in this paper. In view of the actual situation of water disaster prevention and control in Sangshuping Mine of Hancheng Mining Company, the overall scheme design and implementation scheme of mine water dynamic early warning monitoring system are put forward. The scheme can realize the real-time detection of roadway floor, roof, head-on water rich, quick detection, and can analyze the detection data instantly, and the detection results can be done with the result, and the roadway floor and roof can be realized. Head-on structure and water-rich prediction and intelligent monitoring and control.
【学位授予单位】:西安科技大学
【学位级别】:硕士
【学位授予年份】:2017
【分类号】:TD745.2
【参考文献】
相关期刊论文 前10条
1 邓海朋;;祥升煤矿防治水治理方案探索研究[J];煤;2017年02期
2 阴伟伟;;煤矿井下充水岩溶裂隙带防治水施工技术[J];经营管理者;2016年08期
3 裴宏;;浅析煤矿掘进工作面特殊地质环境下老空水探放[J];能源与节能;2016年01期
4 袁帅;;试论煤矿矿井防治水的技术措施[J];科技创新与应用;2015年25期
5 王李军;;对煤矿矿井水害防治措施的研究[J];山西煤炭管理干部学院学报;2015年02期
6 毛候民;;瞬变电磁探水技术在勘探煤矿水中的应用实践[J];煤炭与化工;2015年02期
7 曹志国;何瑞敏;王兴峰;;地下水受煤炭开采的影响及其储存利用技术[J];煤炭科学技术;2014年12期
8 林君;;煤矿井下突水灾害预警系统的研制[J];山东煤炭科技;2013年05期
9 吴连刚;王衍松;冯建波;;矿井全方位探测仪在太平煤矿防治水工作中的应用[J];山东煤炭科技;2013年05期
10 王顺余;;煤矿防治水实用技术及装备分析[J];科技传播;2013年15期
相关博士学位论文 前2条
1 付江伟;井下水力压裂煤层应力场与瓦斯流场模拟研究[D];中国矿业大学;2013年
2 陈彦美;南方岩溶金属矿区地下水防治理论与实践[D];中国地质大学;2013年
相关硕士学位论文 前5条
1 刘亚;贵州省某煤矿水害危险性评价和防治对策研究[D];贵州大学;2015年
2 李含君;煤矿井下排水监控系统的研究[D];陕西科技大学;2014年
3 李旭平;黄玉川煤矿奥灰水突水机理及其防治研究[D];内蒙古科技大学;2013年
4 牟林;煤矿采场底板隔水层阻水能力分析与试验研究[D];西安科技大学;2011年
5 孙林;杨柳煤矿太原组灰岩水对10煤层安全开采的影响及突水水源判别研究[D];安徽理工大学;2009年
,本文编号:2392479
本文链接:https://www.wllwen.com/kejilunwen/anquangongcheng/2392479.html