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首页> 外文期刊>Inverse Problems: An International Journal of Inverse Problems, Inverse Methods and Computerised Inversion of Data >A geometric approach to joint inversion with applications to contaminant source zone characterization
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A geometric approach to joint inversion with applications to contaminant source zone characterization

机译:联合反演的几何方法及其在污染物源区特征分析中的应用

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摘要

This paper presents a new joint inversion approach to shape-based inverse problems. Given two sets of data from distinct physical models, the main objective is to obtain a unified characterization of inclusions within the spatial domain of the physical properties to be reconstructed. Although our proposed method generally applies to many types of inverse problems, the main motivation here is to characterize subsurface contaminant source zones by processing down-gradient hydrological data and cross-gradient electrical resistance tomography observations. Inspired by Newton's method for multi-objective optimization, we present an iterative inversion scheme in which descent steps are chosen to simultaneously reduce both data-model misfit terms. Such an approach, however, requires solving a non-smooth convex problem at every iteration, which is computationally expensive for a pixel-based inversion over the whole domain. Instead, we employ a parametric level set technique that substantially reduces the number of underlying parameters, making the inversion computationally tractable. The performance of the technique is examined and discussed through the reconstruction of source zone architectures that are representative of dense non-aqueous phase liquid (DNAPL) contaminant release in a statistically homogenous sandy aquifer. In these examples, the geometric configuration of the DNAPL mass is considered along with additional information about its spatial variability within the contaminated zone, such as the identification of low and high saturation regions. Comparison of the reconstructions with the true DNAPL architectures highlights the superior performance of the model-based technique and joint inversion scheme.
机译:本文提出了一种新的联合反演方法来解决基于形状的反问题。给定两组来自不同物理模型的数据,主要目标是在要重建的物理属性的空间域内获得对夹杂物的统一表征。尽管我们提出的方法通常适用于许多类型的反问题,但这里的主要动机是通过处理向下梯度的水文数据和跨梯度电阻层析成像观察来表征地下污染物源区。受牛顿多目标优化方法的启发,我们提出了一种迭代反演方案,其中选择下降步骤以同时减少两个数据模型不匹配项。然而,这种方法需要在每次迭代中解决非平滑凸问题,这对于整个域上基于像素的反演在计算上是昂贵的。取而代之的是,我们采用了一种参数水平集技术,该技术可大大减少基础参数的数量,从而使反演在计算上易于处理。通过重建源区结构来检查和讨论该技术的性能,该结构代表了统计上均质的砂质含水层中致密的非水相液体(DNAPL)污染物的释放。在这些示例中,考虑了DNAPL物质的几何构型以及有关其在污染区内的空间变异性的其他信息,例如识别低饱和区和高饱和区。将重构与真实的DNAPL体系结构进行比较,可以突出基于模型的技术和联合反演方案的优越性能。

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