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Shallow Groundwater and DNAPL Movement Within Slightly Dipping Limestone, Southwestern Kentucky

机译:浅地下水和DNAPL运动略微浸渍石灰石,西南肯塔基州

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Recent hydrogeological work, including dye tracing, provides a basis for revising the conceptual site model for groundwater and dense nonaqueous-phase liquid (DNAPL) movement at the site of a historical DNAPL release. This recent work also illustrates some of the problems associated with applying traditional, well-based characterization approaches to karst aquifers. Groundwater and DNAPL movement have been studied at this site for more than 20 years. As the scope of the investigations increased, the conceptual site model for fluid movement through the rock has been periodically updated. Relevant findings based on the latest round of fieldwork include the following: 1. The absence of nearby topographic karst features and large solution voids in boreholes should not be construed to mean that none exist, or that conduit flow is not relevant. 2. Pumping tests that produce low yields, homogeneous zones of influence, and drawdown data that fit analytical diffuse-aquifer solutions should not be used to assume diffuse-flow dominance. 3. At the typical site scale, groundwater flow directions and rates estimated using hydraulic head data from monitoring wells can be misleading. 4. DNAPL-migration pathways and the extent of DNAPL in the karst aquifer beneath the site cannot be mapped with the accuracy routinely required by regulators at non-karst sites. 5. Tracer investigations reliably indicate where the groundwater is going, how fast, and in what type of aquifer permeability.
机译:最近的水文地质工作,包括染料跟踪,为修改历史DNAPL释放的部位进行修改地下水和致密非水相液(DNAPL)运动的概念网站模型提供了基础。该最近的工作还说明了与将传统,基于良好的特征方法应用于喀斯特含水层的一些问题。该网站已经在该网站上进行了地下水和DNAPL运动20多年。随着调查范围的增加,通过岩石流体运动的概念场地模型已经定期更新。基于最新一轮实地工作的相关调查结果包括以下内容:1。钻孔中的附近地形喀斯特特征和大型解决方案空隙不应被解释为意味着没有存在,或导管流不相关。 2.泵送试验,产生低产量,均匀的影响区,以及适合分析漫射 - 含水层解决方案的绘制数据不应用于假设漫射流动优势。 3.在典型的站点规模,使用来自监控井的液压头数据估计的地下水流向和速率可能是误导性的。 4. DNAPL-迁移途径和喀斯特含水层中的DNAPL的程度不能在非喀斯特地点的监管机构经常要求的准确性映射。 5.追踪者调查可靠地表明地下水正在何处,有多快,以及什么类型的含水层渗透性。

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