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Aquifer Imaging with Oscillatory Hydraulic Tomography: Application at the Field Scale

机译:含水层成像与振荡液压断层扫描:在现场规模的应用

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摘要

Modeling and laboratory experiments have demonstrated the ability of oscillatory hydraulic tomography (OHT) to characterize heterogeneity in aquifer hydraulic properties. In OHT, a location is stressed via periodic pumping/injection at a set frequency, and the resulting head signal is measured at a number of monitoring locations. The source of oscillations is repeatedly moved, allowing tomographic imaging of aquifer properties. Changing the period of oscillation also results in observations with additional information. In theory, OHT is comparable to other hydraulic tomography methods in that distributed pressure change measurements provide characterization information. In practice, OHT has several benefits including: (1) little to no water injected into or extracted from the aquifer; and (2) an observational signal at a set period that can be easily extracted in the presence of noise. We report the first field application of OHT, carried out at the Boise Hydrogeophysical Research Site (BHRS) using an oscillating signal generator with a very small cycling volume of 2 L, and a period range of 5 to 70 s. For these tests, signals were detected at distances of over 15 m. After processing to extract periodic signal properties, we perform tomography using a frequency-domain numerical model for groundwater flow. In comparing results against prior characterization results from the BHRS, we find moderate to strong positive correlations between K profiles estimated via different methods at multiple wells, with moderate overall correlation between estimated three-dimensional (3D) K volumes.
机译:建模和实验室实验表明了振荡液压断层摄影(OHT)在含水层液压性能中表征异质性的能力。在OHT中,通过在设定频率的周期性泵送/注射处强调位置,并且在许多监视位置测量所得到的头信号。振荡源反复移动,允许含水层属性的断层摄像。改变振荡时期还导致与附加信息的观察结果。理论上,OHT与该分布压力变化测量中的其他液压断层摄影方法提供了表征信息。在实践中,OHT有几个好处,包括:(1)几乎没有注入或从含水层中提取的水; (2)在噪声存在下可以容易地提取的设定时段处的观察信号。我们报告了使用具有非常小的循环体积<2L的循环体积和5至70秒的旋转信号发生器在博伊西水文态生物学研究部位(BHRS)上进行的第一个现场应用。对于这些测试,在超过15米的距离处检测到信号。处理以提取周期性信号特性后,我们使用用于地下水流的频域数值模型来执行断层扫描。在比较来自BHRS的先前表征结果的结果时,我们发现通过多个井的不同方法估计的K个简档之间的中等至强的正相关,估计三维(3D)k卷之间的中等总相关性。

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  • 来源
    《Ground water》 |2020年第5期|710-722|共13页
  • 作者单位

    Univ Wisconsin Dept Geosci 1215 W Dayton St Madison WI 53711 USA;

    Univ Wisconsin Dept Geosci 1215 W Dayton St Madison WI 53711 USA|Ohio State Univ Sch Earth Sci 275 Mendenhall Lab 125 South Oval Mall Columbus OH 43210 USA;

    Boise State Univ Dept Geosci 1910 Univ Dr Boise ID 83725 USA;

    Stanford Univ Dept Civil & Environm Engn 473 Via Ortega Room 311 Stanford CA 94305 USA;

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