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Uncertainty and data worth analysis for the hydraulic design of funnel-and-gate systems in heterogeneous aquifers

机译:非均质含水层中漏斗和闸门系统水力设计的不确定性和数据分析价值

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Hydraulic failure of a funnel-and-gate system may occur when the contaminant plume bypasses the funnels rather than being captured by the gate. We analyze the uncertainty of capturing the plumes by funnel-and-gate systems in heterogeneous aquifers. Restricting the analysis to two-dimensional, steady state flow, we characterize plume capture by the values of the stream function at the boundaries of the plume and the funnels. On the basis of the covariance of the log conductivity distribution we compute the covariance matrix of the relevant stream function values by a matrix-based first-order second-moment method, making use of efficient matrix-multiplication techniques. From the covariance matrix of stream function values, we can approximate the probability that the plume is bypassing the funnels. We condition the log conductivity field to measurements of the log conductivity and the hydraulic head. Prior to performing additional measurements, we estimate their worth by the expected reduction in the variance of stream function differences. In an application to a hypothetical aquifer, we demonstrate that our method of uncertainty propagation and our sampling strategy enable us to discriminate between cases of success and failure of funnel-and-gate systems with a small number of additional samples.
机译:当污染物羽流绕过漏斗而不是被闸门捕获时,可能会发生漏斗和闸门系统的液压故障。我们分析了漏斗和闸门系统在非均质含水层中捕获羽流的不确定性。将分析限制为二维稳态流,我们通过羽状结构和漏斗边界处的流函数值来表征羽状结构捕获。在对数电导率分布的协方差的基础上,我们利用有效的矩阵乘法技术,通过基于矩阵的一阶二阶矩方法,计算了相关流函数值的协方差矩阵。从流函数值的协方差矩阵,我们可以估计羽流绕过漏斗的概率。我们将对数电导率字段调整为对数电导率和液压头的测量值。在执行其他测量之前,我们通过预期流函数差异方差的减少来估计它们的价值。在一个假设的含水层的应用中,我们证明了我们的不确定性传播方法和采样策略使我们能够通过少量额外的样本来区分漏斗闸系统成功与否的情况。

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