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An estimation of water resources in flooded, connected underground mines

机译:估计洪水,连接地矿井水资源

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AbstractWhen studying discharges in closed mines with relevant environmental impact, the first step is to undertake a complete hydrogeological study of the mining system. In this study, some inactive and flooded coal mines in NW Spain were characterized. The water resources (recharge) of each mine were evaluated considering the infiltration of effective rainfall over mined areas, the groundwater contribution, and the losses from surface watercourses. The studied mine drainage corresponds to a mining reservoir of 5 connected mines. The resources of this reservoir were estimated in 54L s?1for an average year, coming mainly from rainfall as well as losses from irrigation systems during the summer. The volume of voids of the reservoir was estimated by using different approaches: the calculation of the void left by the mining activity and the volume of infiltrated water during the mine flooding. In this particular case, the volume of voids below the discharge level (water reserves) are estimated to be around 1Mm3, which makes them useful for storage and regulation of water, as well as for the production of energy. The acid mine water discharge is of poor quality, and affects the receiving watercourses. Strategies, such as the reduction of the mine's water flow, avoiding water level fluctuations, and passive treatment systems could be applied to diminish these negative effects. The methodology explained here is believed to be suitable for application in closed mines where there is not much information available.Highlights?Flooded mines constitute underground water reservoirs which should be managed.?Mining reservoirs should be characterized to avoid undesirable flooding discharges.?A Spanish mining reservoir made up of 5 connected mines was characterized.?A methodology to estimate resources and reserves of mining reservoirs is presented.?The exposed methods can be applied to other mining areas.]]>
机译:<![cdata [ 抽象 在封闭矿井中储存时,有关环境影响的封闭矿井,第一步是进行完全的水文地质研究采矿系统。在这项研究中,SPAIN的一些不活跃和洪水煤矿的特征是。考虑到在采矿区,地下水贡献和地面水道的损失的情况下,评估每个矿井的水资源(充电)。研究的矿山排水对应于5个连接矿山的采矿藏。该储层的资源估计在54L S 1 平均年,主要来自降雨以及夏季灌溉系统的损失。通过使用不同的方法估计储层的空隙量:在矿井洪水中通过采矿活性留下的空隙和渗透水量的计算。在这种特殊情况下,放电水平(水储量)下方的空隙量估计为约1mm 3 ,这使得它们可用于储存和调节水,以及生产能量。酸性矿井水排放质量差,并影响接收水道。策略,例如矿山的水流,避免水位波动和被动治疗系统的减少,可以缩短这些负面影响。这里解释的方法被认为适用于在封闭的地雷中的应用,其中没有多少信息。 突出显示 泛滥的矿山构成了应管理的地下水库。 矿井储存器应避免不期望的洪水放电。 制作西班牙采矿库5 Connected Mines的特征在于。 介绍了估算矿井库的资源和储备的方法。 公开的方法可以应用于其他挖掘区域。 < / CE:列表> ]]>

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