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首页> 外文期刊>Journal of Hydrology >Borehole characterization of hydraulic properties and groundwater flow in a crystalline fractured aquifer of a headwater mountain watershed, Laramie Range, Wyoming
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Borehole characterization of hydraulic properties and groundwater flow in a crystalline fractured aquifer of a headwater mountain watershed, Laramie Range, Wyoming

机译:井下山地流域晶体骨折含水层中液压性能和地下水流动的钻孔表征,拉米范围,怀俄明州

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Fractured crystalline aquifers of mountain watersheds may host a significant portion of the world's freshwater supply. To effectively utilize water resources in these environments, it is important to understand the hydraulic properties, groundwater storage, and flow processes in crystalline aquifers and field-derived insights are critically needed. Based on borehole hydraulic characterization and monitoring data, this study inferred hydraulic properties and groundwater flow of a crystalline fractured aquifer in Laramie Range, Wyoming. At three open holes completed in a fractured granite aquifer, both slug tests and FLUTe liner profiling were performed to obtain estimates of horizontal hydraulic conductivity (K-h). Televiewer (i.e., optical and acoustic) and flowmeter logs were then jointly interpreted to identify the number of flowing fractures and fracture zones. Based on these data, hydraulic apertures were obtained for each borehole. Average groundwater velocity was then computed using K-h, aperture, and water level monitoring data. Finally, based on all available data, including cores, borehole logs, LIDAR topography, and a seismic P-wave velocity model, a three dimensional geological model of the site was built. In this fractured aquifer, (1) borehole K-h, varies over similar to 4 orders of magnitude (10(-8)-10(-5) m/s). K-h is consistently higher near the top of the bedrock that is interpreted as the weathering front. Using a cutoff K-h of 10(-10)m/s, the hydraulically significant zone extends to similar to 40-53 m depth. (2) FLUTe-estimated hydraulic apertures of fractures vary over 1 order of magnitude, and at each borehole, the average hydraulic aperture by FLUTe is very close to that obtained from slug tests. Thus, slug test can be used to provide a reliable estimate of the average fracture hydraulic aperture. (3) Estimated average effective fracture porosity is 4.0 x 10(-4), therefore this fractured aquifer can host significant quantity of water. (4) Natu
机译:山地流域的破碎晶体含水层可能会举办全球淡水供应的重要部分。为了有效地利用这些环境中的水资源,重要的是要理解液压性能,地下水储存和流动过程,以及彻底需要的透明洞察力。基于钻孔液压特征和监测数据,本研究推断出在Laramie范围内的晶体骨折含水层的液压性能和地下水流动。在裂缝花岗岩含水层完成的三个开孔中,进行SLUC测试和长笛衬垫分析以获得水平液压导电性(K-H)的估计。然后联合解释电视机(即,光学和声学)和流量计日志以识别流动裂缝和骨折区域的数量。基于这些数据,为每个钻孔获得液压孔。然后使用K-H,孔径和水位监测数据计算平均地下水速度。最后,基于所有可用数据,包括核心,钻孔日志,激光雷达地形和地震P波速度模型,建立了三维地质模型。在这种骨折含水层中,(1)钻孔K-H,与4个幅度相似(10(-8)-10(-5)m / s)。 K-H始终靠近基岩顶部,以驳回为耐候前部。使用10(-10)m / s的截止k-h,水硬性区域延伸至类似于40-53米的深度。 (2)长笛估计的裂缝液压孔径在1级数量上变化,并且在每个钻孔处,通过槽的平均液压孔非常接近从SLUG试验获得的级。因此,可以使用SLUG试验来提供对平均断裂液压孔的可靠估计。 (3)估计平均有效骨折孔隙率为4.0×10(-4),因此该骨折含水层可以占用大量水。 (4)Natu

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