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首页> 外文期刊>Journal of Hydrology >Reduction of conceptual model uncertainty using ground-penetrating radar profiles: Field-demonstration for a braided-river aquifer
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Reduction of conceptual model uncertainty using ground-penetrating radar profiles: Field-demonstration for a braided-river aquifer

机译:使用地面穿透雷达剖面减少概念模型不确定性:野生河含水层的现场演示

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Hydrogeological flow and transport strongly depend on the connectivity of subsurface properties. Uncertainty concerning the underlying geological setting, due to a lack of field data and prior knowledge, calls for an evaluation of alternative geological conceptual models. To reduce the computational costs associated with inversions (parameter estimation for a given conceptual model), it is beneficial to rank and discard unlikely conceptual models prior to inversion. Here, we demonstrate an approach based on a quantitative comparison of ground-penetrating radar (GPR) sections obtained from field data with corresponding simulation results arising from various geological scenarios. The comparison is based on three global distance measures related to wavelet decomposition, multiple-point histograms, and connectivity that capture geometrical characteristics of geophysical reflection images. Using field data from the Tagliamento braided river system, Italy, we demonstrate that seven out of nine considered geological scenarios can be discarded as they produce GPR sections that are incompatible with those observed in the field. The retained scenarios reproduce important features such as cross-stratified deposits and irregular property interfaces. The most convenient distance measure of those considered is the one based on wavelet-decomposition. Direct analysis of the distances is the most intuitive and fastest way to compare scenarios.
机译:水文地质流动和运输强烈取决于地下特性的连通性。关于潜在地质环境的不确定性,由于缺乏现场数据和先验知识,要求评估替代地质概念模型。为了降低与逆转相关的计算成本(给定概念模型的参数估计),在反转之前,对等级不太可能的概念模型是有益的。这里,我们展示了一种方法,该方法基于从现场数据获得的地面穿透雷达(GPR)部分的定量比较,具有来自各种地质场景的相应模拟结果。比较基于与小波分解,多点直方图和连接地球物理反射图像的几何特征相关的三个全局距离措施。使用来自意大利的Tagliamento编织河系统的现场数据,我们证明了九个中的七个被认为是可以丢弃的,因为它们产生与在该领域观察到的人不相容的GPR部分。保留的场景再现重要的特征,例如交叉分层沉积物和不规则性接口。所考虑的那些最方便的距离测量是基于小波分解的距离。直接分析距离是比较场景的最直观和最快的方式。

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