Earth and Environmental Systems Division, Pacific Northwest National Laboratory, Richland, WA.
Ground Water. 2024 Sep-Oct;62(5):669-680. doi: 10.1111/gwat.13427. Epub 2024 Jun 21.
The issues associated with long-screened wells (LSWs) (and open boreholes) at contaminated sites are well documented in the groundwater literature but are still not fully appreciated in practice. As established in seminal and review papers going back over three decades, the interpretation of sampling results from LSWs is challenging in the presence of vertical hydraulic gradients and borehole flow; furthermore, LSWs allow for vertical redistribution of contamination between aquifer layers. Acknowledgment of these issues has led to the development of new technologies and well designs to enable discrete-zone monitoring (DZM), yet LSWs remain common for many reasons, for example, as multipurpose wells, for geophysical logging, and (or) as legacy installations. Despite the literature on LSWs and despite the adoption of DZM at many sites, the use of LSWs persists and the challenges of interpreting sampling results from LSWs remain. In this issue paper, we provide a conceptual overview of the problems posed by LSWs and review existing literature and past work to improve the interpretation of sampling in LSWs. We draw on experience from previous studies at the Hanford Site in eastern WA, USA, and use synthetic examples to illustrate key concepts and challenges for interpretation. A recently published analytical modeling framework is used to develop illustrative synthetic examples and demonstrate a workflow for building scientific intuition to understand issues around interpreting samples from LSWs, which is critical to effective characterization and groundwater remediation at sites with LSWs.
与污染场地的长屏井(LSW)(和开式钻孔)相关的问题在地下水文献中已有详细记录,但在实践中仍未得到充分认识。正如三十多年前的开创性和评论性论文所确立的那样,在存在垂直水力梯度和钻孔流动的情况下,LSW 中采样结果的解释具有挑战性;此外,LSW 允许污染在含水层层之间进行垂直再分配。这些问题的认识导致了新技术和井设计的发展,以实现离散区监测(DZM),然而,由于多种原因,LSW 仍然很常见,例如多用途井、地球物理测井和(或)作为遗留设施。尽管有关于 LSW 的文献,并且许多地点都采用了 DZM,但 LSW 的使用仍然存在,并且解释 LSW 采样结果的挑战仍然存在。在本期专题论文中,我们提供了 LSW 带来的问题的概念概述,并回顾了现有文献和以往的工作,以改进 LSW 中采样的解释。我们借鉴了美国华盛顿州东部 Hanford 场址的先前研究经验,并使用合成示例来说明解释 LSW 采样的关键概念和挑战。我们利用最近发表的分析建模框架来开发说明性合成示例,并演示了用于构建理解从 LSW 中采样问题的科学直觉的工作流程,这对于具有 LSW 的场地的有效特征描述和地下水修复至关重要。