Knight Rosemary, Smith Ryan, Asch Ted, Abraham Jared, Cannia Jim, Viezzoli Andrea, Fogg Graham
Department of Geophysics, Stanford University, 397 Panama Mall, Stanford, CA 94305-2210.
Aqua Geo Frameworks, 130360 County Road D, Mitchell, NE, 69357.
Ground Water. 2018 Nov;56(6):893-908. doi: 10.1111/gwat.12656. Epub 2018 Apr 30.
The passage of the Sustainable Groundwater Management Act in California has highlighted a need for cost-effective ways to acquire the data used in building conceptual models of the aquifer systems in the Central Valley of California. One approach would be the regional implementation of the airborne electromagnetic (AEM) method. We acquired 104 line-kilometers of data in the Tulare Irrigation District, in the Central Valley, to determine the depth of investigation (DOI) of the AEM method, given the abundance of electrically conductive clays, and to assess the usefulness of the method for mapping the hydrostratigraphy. The data were high quality providing, through inversion of the data, models displaying the variation in electrical resistivity to a depth of approximately 500 m. In order to transform the resistivity models to interpreted sections displaying lithology, we established the relationship between resistivity and lithology using collocated lithology logs (from drillers' logs) and AEM data. We modeled the AEM response and employed a bootstrapping approach to solve for the range of values in the resistivity model corresponding to sand and gravel, mixed coarse and fine, and clay in the unsaturated and saturated regions. The comparison between the resulting interpretation and an existing cross section demonstrates that AEM can be an effective method for mapping the large-scale hydrostratigraphy of aquifer systems in the Central Valley. The methods employed and developed in this study have widespread application in the use of the AEM method for groundwater management in similar geologic settings.
加利福尼亚州《可持续地下水管理法案》的通过凸显了一种需求,即需要采用经济高效的方法来获取用于构建加利福尼亚中央谷地含水层系统概念模型的数据。一种方法是区域实施航空电磁(AEM)方法。鉴于该地区存在大量导电黏土,我们在中央谷地的图莱里灌溉区采集了104线公里的数据,以确定AEM方法的探测深度(DOI),并评估该方法在绘制水文地层方面的实用性。这些数据质量很高,通过对数据进行反演,得到了显示电阻率变化至约500米深度的模型。为了将电阻率模型转换为显示岩性的解释剖面,我们利用并置的岩性测井(来自钻井日志)和AEM数据建立了电阻率与岩性之间的关系。我们对AEM响应进行了建模,并采用自助法来求解电阻率模型中与非饱和和饱和区域的砂和砾石、粗细混合以及黏土相对应的值的范围。所得解释与现有横截面之间的比较表明,AEM可以成为绘制中央谷地含水层系统大规模水文地层的有效方法。本研究中采用和开发的方法在类似地质环境中使用AEM方法进行地下水管理方面具有广泛的应用。