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Joint Inversion of DC Resistivity and Magnetic Data, Constrained by Cross Gradients, Compactness and Depth Weighting

机译:直流电阻率和磁数据的联合反转,受交叉梯度,紧凑性和深度加权约束

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In this paper we perform a 2-D joint inversion of DC resistivity and magnetic data, constrained by cross-gradients. Inspired by methods developed for potential fields, we introduce into both the separate and joint inversion algorithms also compactness and depth weighting functions, under the form of a model weighting-function. These constraints, usually not considered for DC resistivity inversion, reveal to be decisive for its joint inversion with magnetic data. A linear approximated forward problem of the resistivity is used for the joint inversion so that both the resistivity and magnetic problems are expressed as a linear integral equation under the form of a Fredholm integral of 1st kind. To examine the feasibility of the joint inversion algorithm, we first test the method with two synthetic cases: a thick dyke in a two-layered medium and a cavity located above a conductor. A third synthetic case involves a multisource model. The results are encouraging, revealing that the cross-gradient constraint is an effective tool to improve the separate inversions of DC resistivity and magnetic data. The joint inversion algorithm is also applied to data in the archeological area of the old Pompeii city, nearby Naples. Comparing the results of joint and separate inversions, we obtain a significant improvement in the interpretation of both kind of data in terms of buried walls of an ancient roman villa. In all the studied cases, the cross-gradient constraint appears to be a key-diagnostic tool to assess whether actual coherence is gained among DC resistivity and magnetic susceptibility models.
机译:在本文中,我们执行由交叉梯度约束的直流电阻率和磁数据的2-D关节反转。灵感来自于为潜在领域开发的方法,我们以模型加权函数的形式引入单独的和联合反演算法的单独和联合反演算法。这些约束通常不考虑直流电阻率反转,揭示对其与磁数据的关节反转进行决定性。电阻率的线性近似前向问题用于联合反演,使得电阻率和磁性问题两者都表示为弗雷霍姆积分的形式的线性积分方程。为了检查联合反演算法的可行性,首先用两个合成案例测试方法:在双层介质中的厚堤和位于导体上方的腔中。第三种合成案件涉及多源模型。结果是令人鼓舞的,揭示交叉梯度约束是改善直流电阻率和磁数据的单独逆转的有效工具。联合反演算法也应用于旧庞贝城市的考古区,附近的那不勒斯的数据。比较联合和单独的反转结果,我们在古罗马别墅的埋藏墙方面取得了重大改善。在所有研究的情况下,交叉梯度约束似乎是评估直流电阻率和磁性敏感模型中是否获得实际相干性的键诊断工具。

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