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Continuous Improvement of a Groundwater Model over a 20-Year Period: Lessons Learned

机译:20年间不断改进地下水模型的经验教训

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摘要

Groundwater models developed for specific sites generally become obsolete within a few years due to changes in: (1) modeling technology; (2) site/project personnel; (3) project funding; and (4) modeling objectives. Consequently, new models are sometimes developed for the same sites using the latest technology and data, but without potential knowledge gained from the prior models. When it occurs, this practice is particularly problematic because, although technology, data, and observed conditions change, development of the new numerical model may not consider the conceptual model's underpinnings. As a contrary situation, we present the unique case of a numerical flow and trichloroethylene (TCE) transport model that was first developed in 1993 and since revised and updated annually by the same personnel. The updates are prompted by an increase in the amount of data, exposure to a wider range of hydrologic conditions over increasingly longer timeframes, technological advances, evolving modeling objectives, and revised modeling methodologies. The history of updates shows smooth, incremental changes in the conceptual model and modeled aquifer parameters that result from both increase and decrease in complexity. Myriad modeling objectives have included demonstrating the ineffectiveness of a groundwater extraction/injection system, evaluating potential TCE degradation, locating new monitoring points, and predicting likelihood of exceedance of groundwater standards. The application emphasizes an original tenet of successful groundwater modeling: iterative adjustment of the conceptual model based on observations of actual vs. model response.
机译:由于以下方面的变化,为特定地点开发的地下水模型通常会在几年内过时:(1)建模技术; (2)现场/项目人员; (3)项目经费; (4)建模目标。因此,有时会使用最新的技术和数据针对相同的站点开发新的模型,但是没有从先前的模型中获得潜在的知识。当发生这种情况时,这种做法特别成问题,因为尽管技术,数据和观察到的条件发生了变化,但是新数值模型的开发可能不会考虑概念模型的基础。在相反的情况下,我们介绍了数字流量和三氯乙烯(TCE)传输模型的独特案例,该模型于1993年首次开发,并由同一人员每年进行修订和更新。更新是由数据量的增加,在越来越长的时间范围内暴露于更广泛的水文条件,技术进步,不断发展的建模目标以及修订的建模方法引起的。更新的历史记录显示,由于复杂性的增加和降低,概念模型和建模的含水层参数出现了平滑,增量的变化。众多的建模目标包括证明地下水抽取/注入系统的无效性,评估潜在的TCE降解,定位新的监测点以及预测超出地下水标准的可能性。该应用程序强调了成功进行地下水建模的原始原则:基于对实际响应与模型响应的观察对概念模型进行迭代调整。

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  • 来源
    《Ground water 》 |2018年第4期| 580-586| 共7页
  • 作者单位

    Tetra Tech Inc, 1165 Sanctuary Pkwy, Alpharetta, GA 30009 USA;

    Tetra Tech Inc, Cleveland, OH 44113 USA;

    US Army Corps Engineers, Hydrol Engn Ctr, Davis, CA 95616 USA;

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  • 正文语种 eng
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