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首页> 外文期刊>Hydrogeology journal >Using water-level fluctuations in response to Earth-tide and barometric-pressure changes to measure the in-situ hydrogeological properties of an overburden aquifer in a coalfield
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Using water-level fluctuations in response to Earth-tide and barometric-pressure changes to measure the in-situ hydrogeological properties of an overburden aquifer in a coalfield

机译:使用水位波动响应地球潮和气压变化,以测量煤田中覆盖含水层的原位水文地质性质

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摘要

For the quantitative evaluation of the impact of mining on a groundwater system, it is necessary to constrain the hydrogeological and mechanical properties. However, the in situ estimation of the mechanical properties of rock such as compressibility and porosity, is often difficult. Additionally, determining the hydraulic properties such as hydraulic conductivity, of rock by conventional methods is often expensive. The response of the groundwater level to external loading such as Earth tides and barometric pressure, couples the hydrogeological and mechanical processes of rocks, thus providing a way to infer these properties in the field. This study compared aquifer parameters inferred from tidal and barometric responses with those inferred from conventional hydraulic tests and rock mechanics tests in three groundwater monitoring wells at a site in China. The results show that the hydraulic conductivity inferred from a tidal response is similar to that of a pumping test. The compressibility values calculated for the three wells are all higher than those determined by experiment, and the porosity values calculated are all lower than those determined by experiment, but the differences between the calculated and experimentally measured values are lower than one order of magnitude. Considering the costs and convenience of the water-level response method, this method is a good choice for obtaining the properties of an aquifer, especially those in areas of tectonic activity and those affected by anthropogenic perturbations.
机译:为了定量评估采矿对地下水系统的影响,有必要约束水文地质和机械性能。然而,原位估计岩石的机械性能,例如压缩性和孔隙率,通常难以。另外,通过常规方法确定液压导电性的液压性能通常是昂贵的。地下水位与外部负荷的响应如地球潮汐和气压,耦合了岩石的水文地质和机械过程,从而提供了一种推断出该领域的这些性质的方法。该研究将含水层参数与来自中国三个地下水监测井中的传统液压试验和岩石力学试验推断出来的含水层参数。结果表明,从潮汐响应推断的液压电导率类似于泵送试验。三个孔计算的可压缩性值全部高于通过实验确定的孔,并且计算的孔隙率值均低于通过实验确定的孔隙率值,但计算的和实验测量值之间的差异低于单个数量级。考虑到水平响应法的成本和便利性,这种方法是获得含水层的性质的良好选择,尤其是构造活动区域和受到人为扰动影响的含量。

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