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Joint inversion of teleseismic receiver functions and magnetotelluric data using a genetic algorithm: Are seismic velocities and electrical conductivities compatible?

机译:使用遗传算法对远震接收器功能和大地电磁数据进行联合反演:地震速度和电导率是否兼容?

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摘要

Joint inversion of different kinds of geophysical data has the potential to improve model resolution, under the assumption that the different observations are sensitive to the same subsurface features. Here, we examine the compatibility of P-wave teleseismic receiver functions and long-period magnetotelluric (MT) observations, using joint inversion, to infer one-dimensional lithospheric structure. We apply a genetic algorithm to invert teleseismic and MT data from the Slave craton; a region where previous independent analyses of these data have indicated correlated layering of the lithosphere. Examination of model resolution and parameter trade-off suggests that the main features of this area, the Moho, Central Slave Mantle Conductor and the Lithosphere-Asthenosphere boundary, are sensed to varying degrees by both methods. Thus, joint inversion of these two complementary data sets can be used to construct improved models of the lithosphere. Further studies will be needed to assess whether the approach can be applied globally.
机译:在不同的观测对相同的地下特征敏感的假设下,不同种类的地球物理数据的联合反演有可能提高模型的分辨率。在这里,我们使用联合反演来检验P波远震接收器功能与长周期大地电磁(MT)观测值的兼容性,以推断一维岩石圈结构。我们应用了一种遗传算法来反转来自奴隶克拉通的远震和MT数据;先前对这些数据进行的独立分析已表明岩石圈的相关分层的区域。对模型分辨率和参数折衷的检验表明,这两种方法都在不同程度上感测了该区域的主要特征,即莫霍面,中央奴隶幔导体和岩石圈-软流圈边界。因此,这两个互补数据集的联合反演可用于构造岩石圈的改进模型。需要进一步研究以评估该方法是否可以在全球范围内应用。

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