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Integrating aerial geophysical data in multiple-point statistics simulations to assist groundwater flow models

机译:将航空地球物理数据集成到多点统计模拟中以辅助地下水流模型

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摘要

The process of accounting for heterogeneity has made significant advances in statistical research, primarily in the framework of stochastic analysis and the development of multiple-point statistics (MPS). Among MPS techniques, the direct sampling (DS) method is tested to determine its ability to delineate heterogeneity from aerial magnetics data in a regional sandstone aquifer intruded by low-permeability volcanic dykes in Northern Ireland, UK. The use of two two-dimensional bivariate training images aids in creating spatial probability distributions of heterogeneities of hydrogeological interest, despite relatively ‘noisy’ magnetics data (i.e. including hydrogeologically irrelevant urban noise and regional geologic effects). These distributions are incorporated into a hierarchy system where previously published density function and upscaling methods are applied to derive regional distributions of equivalent hydraulic conductivity tensor . Several models, as determined by several stochastic realisations of MPS dyke locations, are computed within groundwater flow models and evaluated by comparing modelled heads with field observations. Results show a significant improvement in model calibration when compared to a simplistic homogeneous and isotropic aquifer model that does not account for the dyke occurrence evidenced by airborne magnetic data. The best model is obtained when normal and reverse polarity dykes are computed separately within MPS simulations and when a probability threshold of 0.7 is applied. The presented stochastic approach also provides improvement when compared to a previously published deterministic anisotropic model based on the unprocessed (i.e. noisy) airborne magnetics. This demonstrates the potential of coupling MPS to airborne geophysical data for regional groundwater modelling.
机译:异质性的会计处理在统计研究方面取得了重大进展,主要是在随机分析框架和多点统计(MPS)的发展中。在MPS技术中,对直接采样(DS)方法进行了测试,以确定其从英国北爱尔兰低渗透性火山岩侵入的区域砂岩含水层中的航磁数据确定异质性的能力。尽管相对“嘈杂”的磁学数据(即包括与水文地质无关的城市噪声和区域地质效应),但使用两个二维双变量训练图像有助于创建水文地质异质性的空间概率分布。这些分布被合并到一个层次体系中,在该体系中,先前公布的密度函数和放大方法被用来得出等效导水率张量的区域分布。由MPS堤坝位置的几种随机实现确定的几种模型,是在地下水流模型中计算出来的,并通过将建模的压头与现场观测值进行比较来进行评估。与不考虑机载磁数据所证明的堤坝发生的简单均质各向同性含水层模型相比,结果表明模型校准有了显着改善。当在MPS仿真中分别计算正向和反向极性堤坝并应用0.7的概率阈值时,可获得最佳模型。与先前发布的基于未处理(即嘈杂)机载磁性的确定性各向异性模型相比,所提出的随机方法也提供了改进。这证明了将MPS与机载地球物理数据耦合以进行区域地下水建模的潜力。

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