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Adaptive observation-based subsurface conceptual site modeling framework combining interdisciplinary methodologies: a case study on advancing the understanding of a groundwater nitrate plume occurrence

机译:基于自适应观察的地下概念网站建模框架结合了跨学科方法:以推进地下水硝酸盐羽流的理解为例

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摘要

Traditional site characterization and laboratory testing methods are insufficient to quantify and conceptualize subsurface contaminant source-pathway-receptor heterogeneity issues, as they hamper groundwater risk assessment and water resource management using mathematical modeling. To address these issues, we propose an adaptive observation-based conceptual site modeling framework, which emphasizes the need for the iterative testing of hypotheses centered on specific questions with clearly defined objectives using interdisciplinary tools (including, but not limited to, geology, microbiology, hydrogeology, geophysics, and the chemistry of solute fate and transport). Under this framework, we present a case study aimed at a goal-oriented investigation of the source and occurrence of a groundwater nitrate plume previously identified using chemical concentration data from sparsely distributed, conventional, and regional groundwater monitoring wells. These investigations occurred in stages, with the first comprehensive outcome of cost-efficient, non-invasive surface geophysical surveys localizing subsurface heterogeneities laying the groundwork for collaborative, minimally invasive, direct push-based investigations followed by groundwater chemical and stable isotope analyses for source fingerprinting and bioprocess evaluation. Despite the obvious need for further refinement of the conceptual site model as new data become available, we illustrate that the step-by-step integrative framework was useful for systematic maximization of the strengths of different investigation methodologies. Such frameworks and approaches should be encouraged for successful environmental site characterization, monitoring, and modeling.
机译:传统的场地表征和实验室检测方法不足以量化和概念化地下污染源通路受体异质性问题,因为它们妨碍了地下水风险评估和水资源管理使用数学建模。为了解决这些问题,我们提出了一种基于自适应观察的概念网站建模框架,这强调了对使用跨学科(包括但不限于地质学,微生物学)的明确定义目标的特定问题的迭代测试的需要水文地质,地球物理学,以及溶质命运和运输的化学。在该框架下,我们提出了一种案例研究,旨在以稀疏分布,常规和区域地下水监测井的使用化学浓度数据鉴定的地下水硝酸盐羽流的来源和发生的案例研究。这些调查发生在阶段,具有成本效益的第一综合结果,非侵入性表面地球物理调查定位地下异质性,铺设了合作,微创,直接推进的直接推进的研究,然后进行地下水化学和稳定的同位素分析来分析源指纹识别和生物过程评估。尽管对新数据可用的概念站点模型的进一步改进了显而易见的需求,但我们说明了逐步的综合框架对于系统最大化的不同调查方法的优势是有用的。应该鼓励这种框架和方法,以成功的环境现场表征,监测和建模。

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