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Capture zone, travel time, and solute-transport predictions using inverse modeling and different geological models

机译:使用反演模型和不同的地质模型来捕获区域,行进时间和溶质运移预测

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Six regional-scale flow models are compared to gain insight into how different representations of hydraulic-conductivity distributions affect model calibration and predictions. Deterministic geological models were used to define hydraulic-conductivity distributions in two steady-state flow models that were calibrated to heads and baseflow estimates using inverse techniques. Optimized hydraulic-conductivity estimates from the two models were used to calculate layer and model mean hydraulic-conductivity values. Despite differences in the two geological models, inverse calibration produced mean hydraulic-conductivity values for the entire model domain that are quite similar. The layer and model mean hydraulic-conductivity values were used to generate four additional flow models and forward runs were performed. All of the models adequately simulate the observed heads and total baseflow. The six flow models were used to predict the steady-state impact of a proposed well field, and the flow solutions were used in simulating particle tracking and solute transport. Results of the predictive simulations show that, for this example, simple models of heterogeneity produce capture zones similar to more complex models, but with very different travel times and breakthroughs. In verse modeling combined with different geological models can provide a measure of capture zone and breakthrough reliability.
机译:比较了六个区域尺度的流量模型,以深入了解水力传导率分布的不同表示形式如何影响模型的校准和预测。确定性地质模型用于定义两个稳态流模型中的水力传导率分布,这两个模型使用反演技术针对水头和基流估计值进行了校准。使用来自两个模型的优化的水力传导率估算值来计算层和模型的平均水力传导率值。尽管这两个地质模型存在差异,但反向校准产生的整个模型域的平均水力传导率值非常相似。使用层和模型的平均水力传导率值来生成四个附加的流模型,并进行正向运行。所有模型都充分模拟了观察到的水头和总基流。六个流动模型用于预测拟建井场的稳态影响,流动解决方案用于模拟颗粒跟踪和溶质运移。预测模拟的结果表明,对于此示例,异质性的简单模型产生的捕获区域与更复杂的模型相似,但是具有不同的传播时间和突破。在诗歌建模中,结合不同的地质模型可以提供捕获带和突破性可靠性的度量。

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