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首页> 外文期刊>Journal of Hydrology >Groundwater mixing dynamics at a Canadian Shield mine
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Groundwater mixing dynamics at a Canadian Shield mine

机译:加拿大盾构矿山的地下水混合动力学

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Temporal and spatial variations in geochemistry and isotopes in mine inflows at the Con Mine, Yellowknife, are studied to access the impact of underground openings on deep groundwater flow in the Canadian Shield. Periodic sampling of inflow at 20 sites from 700 to 1615 m depth showed that salinities range from 1.4 to 290 gn, with tritium detected at all depths. Three mixing end-members are identified: (1) Ca(Na)-Cl Shield brine; (2) glacial meltwater recharged at the margin of the retreating Laurentide ice sheet at similar to 10 ka; and (3) modern meteoric water. Mixing fractions, calculated for inflows on five mine levels, illustrate the infiltration of modern water along specific fault planes. Tritium data for the modem component are corrected for mixing with brine and glacial waters and interpreted with an exponential-piston flow model. Results indicate that the mean transit time from surface to 1300 m depth is about 23 years in the early period after drift construction in 1979, but decreases to about 17 years in the past decade. The persistence of glacial meltwater in the subsurface to the present time, and the rapid circulation of modem meteoric water since the start of mining activities underline the importance of gradient, in addition to permeability, as a control on deep groundwater flow in the Canadian Shield. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 33]
机译:为了研究地下开口对加拿大盾构深层地下水流动的影响,研究了耶洛奈夫康矿的地球化学和同位素的时空变化。在700至1615 m深度的20个位置进行定期采样的流入量表明,盐度范围为1.4至290 gn,在所有深度都检测到tri。确定了三个混合端成员:(1)Ca(Na)-Cl Shield盐水; (2)在撤回的洛朗德冰盖边缘约10 ka处补充的冰川融水; (3)现代大气水。计算出的五个矿井水位的混合比说明了现代水沿特定断层平面的渗透情况。调制解调器组件的Tri数据经过校正后可与盐水和冰水混合,并通过指数活塞流模型进行解释。结果表明,在1979年进行漂流后的早期,从地面到深度为1300 m的平均渡越时间约为23年,但在过去的十年中减少到约17年。自从开采活动开始以来,地下的冰川融化水一直持续到现在,并且现代的流星水迅速循环,这凸显了除了渗透率以外,梯度的重要性,它是控制加拿大盾构深层地下水流动的重要手段。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:33]

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