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3D inversion of potential field data using a marginalizing probabilistic method

机译:使用边缘化概率方法的潜在场数据的3D反转

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摘要

Probabilistic inversion methods have proven effective in solving many geophysical inverse problems. Structural orientation and spatial extent information can be efficiently incorporated the probabilistic inversion by the use of parameter covariances to produce a geologically realistic model. However, the use of a single model covariance matrix, with the underlying assumption of the presence of only one type of feature (e.g., similar size, shape, and orientation) in the subsurface, limits the ability of probabilistic inversions to recover geologically sound models. An approach based on marginalizing the probabilistic inversion is presented, which makes it possible to partition the inverse domain into various zones, each of which can have its own covariance matrix depending upon the features and/or depths of the sources. Moreover, a spatial gradient weighting function is introduced to enhance or attenuate the structural complexity in different zones. Thus, sources with different shapes, sizes, depths, and densities (or magnetic susceptibilities) can be simultaneously reconstructed. The sensitivity of the solutions to uncertainties in the a priori information, including the orientation, depth, and horizontal position as well as subdivision of the inversion domain, is analyzed. We found through synthetic examples and field data that the developed inversion method was a valid tool for exploration geophysics in presence of a priori geologic information.
机译:概率反演方法已经证明有效解决许多地球物理逆问题。结构方向和空间范围信息可以通过使用参数协方差来有效地纳入概率反演,以产生地质上的现实模型。然而,使用单个模型协方差矩阵,在地下的仅存在一种类型的特征(例如,相似大小,形状和方向)的潜在假设,限制了概率逆转以恢复地质声音模型的能力。提出了一种基于边缘化概率反演的方法,这使得可以将逆域分配给各种区域,每个区域可以具有其自身的协方差矩阵,这取决于源的特征和/或深度。此外,引入了空间梯度加权函数以增强或衰减不同区域的结构复杂性。因此,可以同时重建具有不同形状,尺寸,深度和密度(或磁性敏感性)的源。分析了解决方案在先验信息中的不确定性的敏感性,包括方向,深度和水平位置以及反转域的细分。我们通过合成示例和现场数据发现,发达的反演方法是在经过先验的地质信息存在下勘探地球物理的有效工具。

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