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Determination of potential mine water discharge zones in crystalline rocks at Rozna, Czech Republic

机译:捷克共和国罗兹纳晶体岩潜在矿井排水区的确定

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摘要

The Rozna Mine is one of the last active uranium mines in Europe. When the mine is closed and flooded, the natural groundwater flow pattern will be partly restored. Re-established groundwater flow system will be associated with an increase of groundwater discharge into draining rivers and streams. Since the groundwater inflows to streams can be contaminated by the mine water, the groundwater drainage characteristic of fractured aquifer should be carefully identified. Several methods of ground-water discharge zones identification were used including morphological analysis, thermometry, and electrical conductivity (EC) measurements. Stream temperatures and EC at more than 700 points in the area covering about 85 km~2 were measured. The measurements were performed during winter period, when stream discharges were low and there was a maximum temperature contrast. There was a frequent presence of preferential discharge zones with resulting anomalous temperatures and electric conductivity values of stream water. The results show evident correlation of discharge zones with surface morphology and geological settings. Just like the aquifer discharge characteristics, the aquifer is strongly heterogeneous. The thermometry supported by measurement of EC proved to be a useful tool for large-scale investigation of groundwater flow and drainage in fractured aquifers.
机译:罗兹纳矿是欧洲最后的活跃铀矿之一。当矿井关闭并淹没后,自然的地下水流态将部分恢复。重新建立的地下水流系统将与增加流入排水河流和溪流的地下水有关。由于流入溪流的地下水可能会被矿井水污染,因此应仔细确定裂缝性含水层的地下水排放特征。使用了几种地下水排放区识别方法,包括形态分析,测温法和电导率(EC)测量。在约85 km〜2的区域内,测量了700多个点的溪流温度和EC。测量是在冬季进行的,这时的水流量很低并且有最大的温度对比。优先放电区频繁出现,导致溪流水的温度和电导率值异常。结果表明放电区与表面形态和地质环境之间存在明显的相关性。就像含水层的排放特性一样,含水层也很不均匀。事实证明,以EC的测量为基础的测温法是大规模研究裂隙含水层中地下水流动和排水的有用工具。

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