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Models and Methods of Magnetotellurics 1st Edition by Mark N Berdichevsky, Vladimir I Dmitriev ISBN 354077811X 9783540778110

  • SKU: BELL-2018056
Models and Methods of Magnetotellurics 1st Edition by Mark N Berdichevsky, Vladimir I Dmitriev ISBN 354077811X 9783540778110
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Models and Methods of Magnetotellurics 1st Edition by Mark N Berdichevsky, Vladimir I Dmitriev ISBN 354077811X 9783540778110 instant download after payment.

Publisher: Springer
File Extension: PDF
File size: 10.89 MB
Pages: 576
Author: Mark N. Berdichevsky, Vladimir I. Dmitriev
ISBN: 9783540778110, 354077811X
Language: English
Year: 2008
Edition: 1st Edition.

Product desciption

Models and Methods of Magnetotellurics 1st Edition by Mark N Berdichevsky, Vladimir I Dmitriev ISBN 354077811X 9783540778110 by Mark N. Berdichevsky, Vladimir I. Dmitriev 9783540778110, 354077811X instant download after payment.

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Product details:

ISBN 10: 354077811X 
ISBN 13: 9783540778110
Author: Mark N Berdichevsky, Vladimir I Dmitriev

Magnetotelluric methods are finding increasing applications for imaging electrically conductive structures below the Earth`s surface in both industrial and academic research. In Models and Methods of Magnetotellurics, the authors provide a systematic approach to understanding the modern theory of ill-posed problems which is essential to making confident meaningful interpretation of magnetotelluric and magnetovariational soundings. The interpretation is conducted out in an interactive way, including the hypotheses tests and successive partial inversions with priority of the tippers, magnetic tensors and impedance-phases, which keeps out the destructive static effects of near-surface inhomogeneities. The efficiency of the interpretation is exemplified by new geoelectric models of the Baikal rift zone and the Cascadian subduction zone.

Models and Methods of Magnetotellurics 1st Table of contents:

Part I: Magnetotelluric and Magnetovariational Response Functions

  1. The Magnetotelluric Response Functions

    • On the Deterministic Nature of the Impedance Tensor
    • Rotation of the Impedance Tensor
    • Dimensionality of the Impedance Tensor
      • The One-Dimensional Impedance Tensor
      • The Two-Dimensional Impedance Tensor
      • The Three-Dimensional Impedance Tensor
      • The Superimposition Impedance Tensor
    • Impedance Polar Diagrams
      • Polar Diagrams of the Impedance Tensor
      • Polar Diagrams of H- and E-Polarized Impedances
    • Dispersion Relations in the Impedance Tensor
    • On the Magnetotelluric Anomalies
  2. The Impedance Eigenstate Problem

    • The Classical Formulation of the Tensor Eigenstate Problem
    • Polarization of the Magnetotelluric Field
    • Basic Approaches to the Impedance Eigenstate Problem
    • The Swift-Sims-Bostick Method
    • The Swift-Eggers Method
    • The La Torraca–Madden–Korringa Method
    • Final Remarks on the Impedance Eigenstate Problem
  3. Separation of the Local and Regional Magnetotelluric Effects

    • Using the Local-Regional Decomposition
    • The Bahr and Groom-Bailey Methods
    • The Phase-Tensor Eigenstate Problem
  4. The Magnetovariational Response Functions

    • Magnetic Perturbation Ellipses
  5. The Recent Developments

Part II: Basic Models of the Distortion Theory

  1. Two Classic Models of the Distortion Theory

  2. Models of the Near-Surface Distortions

  3. Models of Deep Geoelectric Structures

  4. Models of Deep Faults

Part III: Interpretation of Magnetotelluric and Magnetovariational Data

  1. Statement of Inverse Problem

  2. The Interpretation Model

  • Further detailed sections might include:
    • One-Dimensional Inversion Methods
    • Two-Dimensional Inversion Methods
    • Three-Dimensional Inversion Methods
    • Joint Inversion with Other Geophysical Data
    • Practical Case Histories and Applications (e.g., crustal imaging, mantle conductivity, geothermal exploration, CO2 storage characterization)
    • Instrumentation and Field Procedures (though this book focuses more on models/methods, some context is often provided)
    • Data Processing and Noise Reduction

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Tags: Mark N Berdichevsky, Vladimir I Dmitriev, Models

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