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- W4230877605 abstract "PreviousNext No AccessMining Geophysics, Volume 2, Theory5. Part D. Induced Polarization, a ReviewAuthors: T. R. MaddenT. CantwellT. R. MaddenGeology and Geophysics Department, , MIT, Cambridge, Massachusetts, USGeoscience Incorporated, Lexington, Massachusetts, USSearch for more papers by this author and T. CantwellGeology and Geophysics Department, , MIT, Cambridge, Massachusetts, USGeoscience Incorporated, Lexington, Massachusetts, USSearch for more papers by this authorhttps://doi.org/10.1190/1.9781560802716.ch2d SectionsAboutPDF/ePub ToolsAdd to favoritesDownload CitationsTrack CitationsPermissions ShareFacebookTwitterLinked InRedditEmail Abstract Investigations into the causes of induced polarization have shown that the largest effects are due to the presence of electronic conducting minerals in the pore system of the rocks. Theoretical studies into the charge transfer reactions involved when current is sent through such mineralized rocks have led to some simple rules concerning the time or frequency structure of the induced polarization effects. There are a few indications that at very low frequencies or at long time scales, deviations from these rules occur that may provide further parameters for evaluating induced-polarization effects. Permalink: https://doi.org/10.1190/1.9781560802716.ch2dFiguresReferencesRelatedDetailsCited by3-D complex resistivity imaging using controlled source electromagnetic data: a multistage procedure using a second order polynomial parametrization9 December 2022 | Geophysical Journal International, Vol. 233, No. 2In Situ Heavy Oil Upgrading by Electric Enhanced Oil Recovery, Complex Carbonate Heavy Oil Field Case10 December 2018Influence of Rock Microstructure on its Electrical Properties: An Analysis Using X-ray Microcomputed TomographyEnergy Procedia, Vol. 114Induced polarization response of porous media with metallic particles — Part 6: The case of metals and semimetalsAndré Revil, Deqiang Mao, Zhenlu Shao, Michael F. Sleevi, and Deming Wang16 February 2017 | GEOPHYSICS, Vol. 82, No. 2A discussion on the performance of seven existing models proposed to describe induced polarizationMing Liu, Jin Yang, Ju Feng, Tianyi Wang, and Hao Zhang29 September 2016 | GEOPHYSICS, Vol. 81, No. 6Broadband EIT borehole measurements with high phase accuracy using numerical corrections of electromagnetic coupling effects5 July 2013 | Measurement Science and Technology, Vol. 24, No. 8On charge accumulation in heterogeneous porous rocks under the influence of an external electric fieldA. Revil11 July 2013 | GEOPHYSICS, Vol. 78, No. 43D induced-polarization data inversion for complex resistivityMichael Commer, Gregory A. Newman, Kenneth H. Williams, and Susan S. Hubbard28 April 2011 | GEOPHYSICS, Vol. 76, No. 3Assessment of measurement errors for galvanic-resistivity electrodes of different compositionDouglas LaBrecque and William Daily18 January 2008 | GEOPHYSICS, Vol. 73, No. 2Induced polarization and surface electrochemistryJ. B. Merriam21 May 2007 | GEOPHYSICS, Vol. 72, No. 4Induced-polarization detection and mapping of contaminant plumesJohn A. Sogade, Francesca Scira-Scappuzzo, Yervant Vichabian, Weiqun Shi, William Rodi, David P. Lesmes, and Frank Dale Morgan24 May 2006 | GEOPHYSICS, Vol. 71, No. 3The effect of electrode contact resistance and capacitive coupling on complex resistivity measurementsThomas Ingeman‐Nielsen6 October 20069. Resistivity, Induced Polarization, and Complex ResistivityKen Zonge, Jeff Wynn, and Scott Urquhart21 March 2012Evaluation of permeable reactive barrier (PRB) integrity using electrical imaging methodsLee Slater and Andrew Binley29 May 2003 | GEOPHYSICS, Vol. 68, No. 3IP interpretation in environmental investigationsLee D. Slater and David Lesmes7 February 2012 | GEOPHYSICS, Vol. 67, No. 1Developments in a model to describe low‐frequency electrical polarization of rocksCarlos A. Dias7 February 2012 | GEOPHYSICS, Vol. 65, No. 2Short note on electrode charge-up effects in DC resistivity data acquisition using multi-electrode arraysGeophysical Prospecting, Vol. 48, No. 1Application of Geophysical Methods to Investigate the Extention of Primary Tin Deposits in the Pemali Open Pit Mine, Bangka, IndonesiaTowards a General Theory of Induced Electrical Polarization in Geophysical ExplorationIEEE Transactions on Geoscience and Remote Sensing, Vol. GE-19, No. 4Induced polarization: Some early non-linear aspects of electrode impedancePure and Applied Geophysics PAGEOPH, Vol. 119, No. 1COMPARISON OF TIME, FREQUENCY, AND PHASE MEASUREMENTS IN INDUCED POLARIZATION*Geophysical Prospecting, Vol. 20, No. 3Geophysical exploration through geologic coverGeothermics, Vol. 2 Mining Geophysics, Volume 2, TheoryISBN (online):978-1-56080-271-6Copyright: 1967 Pages: 717 publication data© 1967 All rights reserved. No part of this publication may be reproduced or distributed in any form or by any means without written permission of the publisherPublisher:Society of Exploration Geophysicists HistoryPublished in print: 01 Jan 1967 CITATION INFORMATION T. R. Madden and T. Cantwell, (1967), 5. Part D. Induced Polarization, a Review, General Series : 373-400. https://doi.org/10.1190/1.9781560802716.ch2d Plain-Language Summary PDF DownloadLoading ..." @default.
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