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Impedance of an induction coil at the opening of a borehole in a conductor
Author(s) -
Theodoros Theodoulidis,
John R. Bowler
Publication year - 2008
Publication title -
journal of applied physics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.699
H-Index - 319
eISSN - 1089-7550
pISSN - 0021-8979
DOI - 10.1063/1.2827459
Subject(s) - electromagnetic coil , eddy current , transverse plane , eigenfunction , conductor , electrical impedance , borehole , physics , mechanics , truncation (statistics) , excitation , perpendicular , position (finance) , eddy current testing , acoustics , mathematical analysis , geometry , geology , mathematics , eigenvalues and eigenvectors , engineering , structural engineering , geotechnical engineering , statistics , finance , quantum mechanics , economics
The electromagnetic field of a cylindrical eddy current probe coil near the open end of a borehole in a conductor has been calculated analytically accounting for edge effects. Calculations of the coil impedance as a function of position and excitation frequency have been made allowing theoretical results to be compared with experimental measurements. Comparisons have been carried out for special cases in which a cylindrical coil has its axis either perpendicular or parallel to the axis of the hole. In the approach used, the field is expressed in terms of transverse electric and transverse magnetic potentials defined with respect to the axis of the hole. The domain of the problem is truncated in the axial direction in order to express the solution in the form of eigenfunction expansions. The truncation modifies the original unbounded domain problem, but the additional boundaries can be made as remote from the coil as desired so that they have a negligible effect on numerical estimates of the coil field. Th...

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