Fritz Bradley G, Mackley Rob D, Arntzen Evan V
Pacific Northwest National Laboratory, 902 Battelle Blvd., Richland, WA, 99354.
Ground Water. 2016 Mar;54(2):291-5. doi: 10.1111/gwat.12335. Epub 2015 Mar 26.
Slug tests performed using mini-piezometers with internal diameters as small as 0.43 cm can provide a cost effective tool for hydraulic characterization. We evaluated the hydraulic properties of the apparatus in a laboratory environment and compared those results with field tests of mini-piezometers installed into locations with varying hydraulic properties. Based on our evaluation, slug tests conducted in mini-piezometers using the fabrication and installation approach described here are effective within formations where the hydraulic conductivity is less than 1 × 10(-3) cm/s. While these constraints limit the potential application of this method, the benefits to this approach are that the installation, measurement, and analysis is cost effective, and the installation can be completed in areas where other (larger diameter) methods might not be possible. Additionally, this methodology could be applied to existing mini-piezometers previously installed for other purposes. Such analysis of existing installations could be beneficial in interpreting previously collected data (e.g., water-quality data or hydraulic head data).
使用内径小至0.43厘米的微型测压计进行的常水头试验可为水力特性描述提供一种经济高效的工具。我们在实验室环境中评估了该仪器的水力特性,并将这些结果与安装在具有不同水力特性位置的微型测压计的现场测试结果进行了比较。根据我们的评估,使用此处所述制造和安装方法在微型测压计中进行的常水头试验在水力传导率小于1×10(-3)厘米/秒的地层中是有效的。虽然这些限制限制了该方法的潜在应用,但这种方法的好处是安装、测量和分析具有成本效益,并且可以在其他(较大直径)方法可能无法实施的区域完成安装。此外,这种方法可应用于先前为其他目的安装的现有微型测压计。对现有装置的这种分析可能有助于解释先前收集的数据(例如水质数据或水头数据)。