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Basic Principles of Induction Logging
Electromagnetic Methods in Borehole Geophysics

The only reference book available that provides a step-by-step description of the theory of electromagnetic methods in borehole applications

Alex Kaufman (Author), Gregory Itskovich (Author)

9780128025833

Paperback, published 18 May 2017

520 pages
22.9 x 15.1 x 3.2 cm, 0.45 kg

Basic Principles of Induction Logging provides geoscientists with the information required to survey the electrical conductivity of rocks surrounding a borehole. The formation conductivity distribution in the borehole vicinity is critical information required in formation evaluation and geosteering applications. Developing a theory of EM logging and on understanding basic physics for both wireline and LWD logging tools, this reference furnishes valuable insights for development and use of EM techniques in practical logging applications.

Basic Principles of Induction Logging will be vital for anyone attempting to investigate, invent, and develop the next generation of EM logging tools. It will provide information required to enable operation in more challenging environments such as logging while drilling, anisotropic and thinly laminated formations, high angle and horizontal wells.

1. System of equations of the stationary electric and magnetic fields2. Physical laws and Maxwell’s equations 3. Propagation and diffusion of electromagnetic field in a non-conducting medium4. Propagation and diffusion in a uniform medium5. Quasi-stationary field of magnetic dipole in a uniform medium6. Geometrical factor theory of induction logging7. Integral equations and their approximations8. Electromagnetic field of a vertical magnetic dipole in the presence of cylindrically-layered formation9. Quasi-stationary field of the vertical magnetic dipole in a bed of finite thickness10. Transient field of magnetic dipole on the borehole axis11. Induction logging with transversal coils12. The influence of anisotropy on the fieldAppendix: Electromagnetic response of eccentred magnetic dipole in cylindrically-layered media

Subject Areas: Geophysics [PHVG]

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