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1.
本文以谷德振先生创立的岩体工程地质力学理论为指导,在水文地质结构概念的基础上提出了矿山水文地质结构的概念,结合我国煤矿的宏观地质背景及矿山水害的研究基础,基于矿山水文地质结构对矿山水害类型进行了重新划分。从突水水源、导水通道以及采掘活动3个致灾危险源出发,结合矿山突水溃砂灾害、底板突水实例,对矿山水文地质结构的采动响应进行研究,为矿山水害防治和矿山安全地质工作提供了一种新的思路和途径,显示了岩体工程地质力学在煤矿水文地质工程地质研究中的重要指导作用和强大的生命力。  相似文献   

2.
废弃矿山引起的环境地质灾害   总被引:16,自引:1,他引:15  
系统分析了国内外废弃矿山引起的地下水污染、地表水污染、地表塌陷及诱发邻近矿井突水等环境地质灾害特点,论述了废弃矿山与环境地质灾害之间存在的互馈链关系及废弃矿山因地下水位回弹所诱发环境地质灾害的机理,提出了研究和治理废弃矿山环境地质灾害的监测、监控及综合治理的技术思路。   相似文献   

3.
With depleted coal resources or deteriorating mining geological conditions, some coal mines have been abandoned in the Fengfeng mining district, China. Water that accumulates in an abandoned underground mine (goaf water) may be a hazard to neighboring mines and impact the groundwater environment. Groundwater samples at three abandoned mines (Yi, Er and Quantou mines) in the Fengfeng mining district and the underlying Ordovician limestone aquifer were collected to characterize their chemical and isotopic compositions and identify the sources of the mine water. The water was HCO3·SO4-Ca·Mg type in Er mine and the auxiliary shaft of Yi mine, and HCO3·SO4-Na type in the main shaft of Quantou mine. The isotopic compositions (δD and δ18O) of water in the three abandoned mines were close to that of Ordovician limestone groundwater. Faults in the abandoned mines were developmental, possibly facilitating inflows of groundwater from the underlying Ordovician limestone aquifers into the coal mines. Although the Sr2+ concentrations differed considerably, the ratios of Sr2+/Ca2+ and 87Sr/86Sr and the 34S content of SO42? were similar for all three mine waters and Ordovician limestone groundwater, indicating that a close hydraulic connection may exist. Geochemical and isotopic indicators suggest that (1) the mine waters may originate mainly from the Ordovician limestone groundwater inflows, and (2) the upward hydraulic gradient in the limestone aquifer may prevent its contamination by the overlying abandoned mine water. The results of this study could be useful for water resources management in this area and other similar mining areas.  相似文献   

4.
This work presents analysis of groundwater flow conditions and groundwater control measures for Vazante underground mine located in the state of Minas Gerais, Brazil. According to field observations, groundwater flow processes in this mine are highly influenced by the presence of karst features located in the near-surface terrain next to Santa Catarina River. The karstic features, such as caves, sinkholes, dolines and conduits, have direct contact with the aquifer and tend to increase water flow into the mine. These effects are more acute in areas under the influence of groundwater-level drawdown by pumping. Numerical analyses of this condition were carried out using the computer program FEFLOW. This program represents karstic features as one-dimensional discrete flow conduits inside a three-dimensional finite element structure representing the geologic medium following a combined discrete-continuum approach for representing the karst system. These features create preferential flow paths between the river and mine; their incorporation into the model is able to more realistically represent the hydrogeological environment of the mine surroundings. In order to mitigate the water-inflow problems, impermeabilization of the river through construction of a reinforced concrete channel was incorporated in the developed hydrogeological model. Different scenarios for channelization lengths for the most critical zones along the river were studied. Obtained results were able to compare effectiveness of different river channelization scenarios. It was also possible to determine whether the use of these impermeabilization measures would be able to reduce, in large part, the elevated costs of pumping inside the mine.  相似文献   

5.
As hydrogeological conditions of coal field in North China are complicated, coal mine water hazards have been occurring frequently. Nearly 80% of coal mines are affected by Ordovician and Permo-Carboniferous Karst water. According to rough statistics, 200 incidents of water inrush have occurred since 1950, 1,500 persons have died, and there is an economic loss of 3 billion Yuan (RMB). The climate of North China belongs to drought or semi-drought zone. So the recharge amount of ground water by infiltration of precipitation is limited. Stronger coal mine water drainage has brought a series of environmental problems, such as water resource and lots of famous Karst springs exhausted, surface collapse emerged, mine water contaminated. Coal mine water hazards are so serious that the economic benefit of coal mines is dropping. Sustainable development of coal mines is affected. So, preventing coal mine water hazards and protecting geological environment are essential. This thesis focuses on preventing coal mine water hazards technologies. The technologies include four aspects: exploration of hydrogeological conditions; prediction and forecast of water inrush; mining under safe water pressure; and sealing off groundwater by grouting.  相似文献   

6.
隋旺华 《工程地质学报》2022,30(6):1849-1866
矿山地下工程渗透变形破坏造成的典型灾害类型包括顶板突水溃砂、底板突水、防水闸墙与围岩界面渗透破坏等。本文从刘国昌先生对我国矿山水文地质工程地质学发展的奠基作用谈起,综述了矿山底板岩体渗透变形破坏突水灾害机理和防控技术进展。回顾了煤矿底板突水系数提出、改进和应用的历史,从底板渗透变形破坏产生的渗透力学机理重新阐释了突水系数的物理含义。基于底板岩体结构临界抗渗水力坡度建立了抗渗安全系数突水判别方法,其底板临界抗渗水力坡度可由半经验方法估算。在对底板突水评价方法演进分析的基础上,提出了底板危险源辨识和突水危险性动态评价方法。对底板突水灾变的主动防控措施的防控原理及效果评估方法进行了分析。最后,讨论了矿山底板渗透稳定性方面需要进一步深入研究的科学问题。  相似文献   

7.
煤矿水害分区、矿井水害类型与水文地质类型等划分结果在矿井充水水源、充水通道等水害形成要素方面体现相对不足,对煤矿防治水工作指导性不强。本文从矿井水害形成的基本要素入手,通过分析矿井不同类型充水水源、充水通道及其组合条件下的矿井水害特点及其危害程度,将矿井充水水源按其富水程度与供给能力划分为缓渗式弱供给、涌溃式快供给、突涌式强供给和无阻滞式充分供给4种类型;将充水通道按照其渗流畅通性与空间尺寸划分为低渗流型、高渗流型、小断面自由流管道型、大断面自由流通道型4类充水通道;按不同充水水源与充水通道之间的组合关系,将矿井水害危害性程度划分为轻微、中等、严重与极严重4级,并借鉴Piper三线图与库尔洛夫式地下水水化学分析原理,绘制了矿井水害类型"4-4-4三线图",提出了能简洁反映矿井关键充水要素与水害特征的矿井水害类型划分方法,为煤矿开展水害防治提供指导。   相似文献   

8.
Yu  Haitao  Zhu  Shuyun  Wang  Xianhui 《Hydrogeology Journal》2021,29(4):1647-1656
Hydrogeology Journal - Water inrush in coal mines is commonly linked to fault zones. Excavation of the coal seam can lead to new fractures in the associated fault zone. Many water inrush disasters...  相似文献   

9.
王广才  段琦等 《地质论评》2001,47(6):653-657
矿井防治水的理论和工程实践表明,水文地球化学方法是矿井水害预防和治理工作中较为有效的一种方法,以平顶山矿区、肥城矿区为例,阐述了水文地球化学方法在水害研究中的某些应用,在平顶山矿区、环境同位素(氢、氧)和统计分析(聚类分析)技术的研究结果,进一步证实和校正了以往对该区水流系统的概念模型,即局部水流系统和过渡水流系统(或西南部和东北部子系统)的划分仅适于寒武系灰岩含水系统;砂岩含水层在矿区中、北部低山区接受大气降水补给,并有可能补给薄层灰岩含水层。在肥城矿区,地下水示踪试验结果表明,该区的GF9,F7-1、F7-3断层在试验段内具有较强的导水性,奥灰水可通过上述断层并以不同特征的通道和速度继续径流并补给各井下出水点,因而是该区煤矿安全的主要威胁。  相似文献   

10.
徐德伟  李海东 《地下水》2019,(1):112-114
近年不断发生的突水事故,给煤矿安全生产带来严重威胁,研究矿区水文地质特征,分析矿井充水因素有重要现实意义。根据东胜煤田乌拉素矿区地质勘探和水文地质资料,对煤层开采导水裂隙带高度进行计算,结果表明:直罗组底部、含煤系地层的裂隙承压水含水层和上部煤层采空区内的积水,是煤层开采时矿井涌水的主要充水水源,矿井充水通道有断层裂隙带、封闭不良钻孔、采动导水裂隙带;其中导水裂隙带会将上部煤层采空区积水导通,使充水强度增大,矿坑涌水量增加。建议开采过程中要做到边探边采,探采结合,预防突水问题。  相似文献   

11.
以美国匹兹堡煤田为例,介绍了废弃矿井地下水回充、相邻矿井水连通和自流排泄出地表,以致造成河水污染,生产矿井涌水量增加,甚至导致生产矿井水害事故等问题。强调应基于GIS和GPS等技术对这类矿区进行水文地质填图,设立长期水位水质观测站,并有针对性的设置矿井水处理厂。针对我国废弃矿井充水问题提出了建议。   相似文献   

12.
中国煤矿水害基本特征及其主要影响因素   总被引:9,自引:1,他引:8  
分析了中国煤矿水害发生发展的基本规律,研究了中国煤矿水害的基本特征及其产生原因。较为系统地论述了我国煤矿水害防治技术存在的主要问题、技术难关以及生产企业对矿井水害防治技术的基本需求。重点分析了深部煤炭资源开发过程中高承压水底板突出机理及其防治技术和废弃矿井老空水突出机理与防治技术。提出了中国煤矿水害防治技术和矿井水文地质安全保障体系建设的发展趋势。   相似文献   

13.
在系统解译肥城矿区TM图像的基础上,解译出了5条近平行等距的南北向构造带。随九、十层煤开采,东部三矿都曾发生过严重的突水事故。突水资料及放水实验说明出水点多发生在带内的南北向、北北东向及北西向断裂附近,以及这些断裂与其他断裂的交汇部位。矿区西部地质构造更加复杂,通过西部构造带的影像特征,初步圈定西部三矿突水范围,并提出避免水害的一些措施。  相似文献   

14.
Water inrush into coal mines from aquifers underlying coal seams often causes serious casualties and economic losses. The key to preventing the disaster is to discover a water inrush mechanism suitable for specific geological and hydrogeological conditions and apply reasonable control measures. A case of the Chensilou mine is studied in this paper. Complex geological and hydrogeological conditions, such as 12 aquifers in the floor and small distance between coal seam and aquifer, make the mining face in the synclinal basin have a great risk of water inrush. In addition, as an important way to prevent the disaster, grouting will aggravate the risk of water inrush from the floor. The slurry will drive groundwater in the limestone aquifers L8, even L7 and L6 along the horizontal (fracture zone in L11~L8) and vertical (Fs1 ~Fd1) water flow channel into the mining face and synclinal basin. A new water inrush mechanism driven by grouting is formed. In order to prevent this disaster, based on statistical law of hole deviation, the relative error of vertical depth and the angle between the borehole and the rock formation are obtained. Finally, an improved grouting method is proposed, which is useful to ensure the safe production of coal mine and reduce the cost of grouting.  相似文献   

15.
为克服层次分析法主观确权的弊端,同时避免熵权客观确权与主控因素实际重要程度相悖的错误,以山西长治三元煤矿3号煤层底板奥灰突水危险性评价为例,将熵权与层次分析耦合确定煤层底板突水主控因素权重并建立脆弱性指数模型,采用K均值聚类法对脆弱性指数值进行聚类分区,确定阈值3个,按照突水危险程度将研究区分为安全区、相对安全区、过渡区和危险区4个区域。经对比验证评价结果符合实际情况。   相似文献   

16.
废弃矿井地下水淹没过程的水流与水位数值模拟   总被引:1,自引:0,他引:1  
定量分析和研究废弃矿井淹没过程的水流特征对于预测和防止废弃矿井地下水淹没过程中诱发的次生灾害具有重要意义。建立了废弃矿井淹没的多种介质水流数学模型,得出了淹没补给水量随时间、矿井内淹没水位和补给水源含水层水位之间的相关关系,建立了淹没补给水量与相关影响因素之间的函数关系式,完成了矿井淹没过程中涌水量实时计算的FEFLOW模块设计和开发。进行了近水平煤层开采后废弃矿井充水淹没水位回弹过程的数值模拟计算,得到了不同充水介质在充水淹没过程中的水流和水位回弹特征。结果显示,FEFLOW二次开发模块运算效果良好,具有实用价值。   相似文献   

17.
普阳煤矿位于一断陷盆地的浅部新近系地层中,矿区被3种类型的水文地质边界圈闭。煤层分布标高低于暗河出口100~230 m,煤田四周及盆地基底均为岩溶含水层,其承压水头高于煤层底板67~268 m,预计最低开采标高的平均承压水头约206 m。为解决矿区地下水突水威胁,监测普阳河水流入和流出的水量,根据水均衡原理及矿坑充水要素,制定中长期排水方案。研究结果表明,矿区岩溶发育垂向分带特征清楚,煤层底板以下岩溶含水层以弱岩溶带为主,单元内93%的地下水通过普阳暗河集中排泄,加之煤层以下有一定厚度的隔水层阻隔,故深层开采时可能发生局部突水危害,但水量不大,最大涌水量仅限于自然状态下补给普阳河的地下水径流量。结合矿坑充水控制因素及地下水动力学分析,采用水均衡法评价突水量,方便可行。   相似文献   

18.
随着煤炭绿色资源的不断开采,位于煤炭开发利用全周期末端的矿井关闭\废弃问题逐渐显现,随之而来的关闭/废弃矿井地下空间资源开发利用成为一个亟须解决的问题。在对我国废弃矿井现状统计分析的基础上,以能源开采造成的地下空间方位、形态差异化为依据,将关闭/废弃矿井地下空间资源分为采空区空间资源、巷道空间资源、硐室空间资源;探讨了空间资源作为能源存储场所的单一利用方式和多方向、多领域协同多元开发利用的关闭/废弃矿井地下空间资源利用方式;并由此提出了一种关闭/废弃矿井地下空间分类分级精准利用模式,构建调研分析、工程类比初判、模型构建详估和软件决策系统研发为主干流程的精准开发利用系统,通过精准利用模式与精准开发利用系统模型对单一和多元开发利用方式进一步分析,为关闭/废弃矿井空间资源开发利用的研究和实践提供参考。   相似文献   

19.
以徐州东部废弃矿井为例,太原组灰岩含水层为研究对象,通过建立废弃矿井地区地下水流系统模型,运用数值模拟技术对区域地下水流场演变过程进行研究,揭示矿井废弃地区地下水流场演化的一般规律为:煤矿关闭前,为满足生产生活需要,矿井进行大量排水、抽水工作,矿区形成若干降落漏斗,如位于矿区西部的青山泉煤矿和北部的韩桥煤矿内均存在大面积降落漏斗,中心水位低于-25 m。受水力梯度影响,地下水向低洼的矿坑处汇集,原生地下水流系统遭到破坏。矿井闭坑后,原有排水系统全部停止工作,地下水位缓慢回升,降落漏斗逐渐减小,根据模型模拟结果,发现水位回升速度随矿井关闭时间的增加而减慢:在矿井关闭第1年内,水位回升速度较大,为1.14 m/a;关闭第3年时,水位回升速度减少至0.165 m/a;矿井关闭10年时,地下水最高水位为-16.55 m,从关闭第3年至第10年的7年时间内,水位回升速度仅0.039 m/a,矿区地下水流系统得到恢复,模拟区最终形成自北向南的近似稳定的地下水径流场。  相似文献   

20.
Geochemical modeling was employed to estimate the chemistry of water infiltrating into abandoned underground flooded and unflooded coalmines of the Uniontown syncline, Fayette County, Pennsylvania. This was done to help evaluate factors governing the long-term evolution of coalmine discharge water quality in the Uniontown syncline area. The subsurface structure and lithology was delineated using borehole, mine shaft, and stratigraphic information. Hydrogeologic analyses indicated that most of the recharge to mine voids occurs in the zones of shallow overburden cover of less than 20 m in thickness. The water–rock contact period in the recharge areas of the overburden was estimated to be 5 days or greater for the flooded mines, and a day or less for the unflooded mines. Flow-through reaction-path models were applied to the topsoil and shale–sandstone lithological units identified in the recharge areas. The model predicted water entering the flooded mines at a pH of 6.65, alkalinity of 6.92 mequiv. l–1 and a total sulfate concentration of 7.33 mM, and the unflooded mines at a pH of 6.68, alkalinity of 6.99 mequiv. l–1 and a total sulfate concentration of 3.08 mM. The model predictions for the flooded and unflooded mines are consistent with groundwater data from the study site, indicating the usefulness of this approach in evaluating the contribution of overburden chemistry to the evolution of mine discharge quality.  相似文献   

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