Experimental and theoretical aspects of induced polarization: 2 Macroscopic and microscopic theories
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Berlin [u.a.]
Borntraeger
1976
|
Schriftenreihe: | Geoexploration monographs. Series 1
7,2 |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XVI S., S. 252 - 335 graph. Darst. |
ISBN: | 3443130100 |
Internformat
MARC
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245 | 1 | 0 | |a Experimental and theoretical aspects of induced polarization |n 2 |p Macroscopic and microscopic theories |c by J. Bertin and J. Loeb |
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Datensatz im Suchindex
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adam_text | Contents
CHAPTER III
Macroscopic Theories.................... 251
Introduction........................ 251
18 Samples from Literature.................. 253
18.1 Wait [B 18] and [165].................. 253
18.2 Seigel [142]. See also [B 18] and [143]............. 254
18.3 Komarov et al. [87]................... 256
18.231 Surface Dipole Density................ 256
18.232 Volume Dipole Density................ 257
18.4 Mongelli and Patella [109]................ 257
18.5 Frische and von Buttlar [49]............... 258
18.6 Bhattacharyya [15]................... 260
18.7 Madden and Cantwell [97]................ 261
18.8 Hohman et al. [77]................... 262
18.9 Other Papers...................... 263
19 Tentative Synthesis of 18.................. 263
19.1 Comment on the Use of Laplace Transform........... 263
19.2 Possibility of a Theory of Quasi-Steady Fields.......... 264
19.21 A Simplified Theory of Time Behaviour........... 264
19.22 Boundary Conditions................. 265
20 A Proposed Macroscopic Theory................ 266
20.1 IP Dielectric Constant................... 267
20.11 A C Operation................... 267
20.111 Finzi Contini s Ballistic Method.......... 268
20.112 Nilsson s A C Models (See also Fuller and Ward [50]) . . 268
20.113 Use of Phase in A C Measurements.......... 269
20.114 Metal Factor................. 269
VI Contents
20.12 Transients — Time Constants.............. 270
20.121 Self-Depletion Process.............. 270
20.122 Rémanent Polarization.............. 271
20.13 Computation for a Spherical Inclusion........... 272
20.131 An Interpretation of Normalized Time Integral ..... 273
20.2 More Complicated Discharge Curves.............. 274
20.21 Circuit Models with Lumped Parameters.......... 275
20.22 Maxwellization of Circuit Diagrams (Loeb [95])....... 276
20.23 Warburg Resistance [168]............... 277
20.24 Data Processing................... 278
21 Spurious Effects..................... 280
21.1 EM Coupling in Schlumberger Arrays by Duval, Loeb and Rocroi . . . 280
21.11 Transient..................... 281
21.12 Effect of the Transmitting Loop in AC Fig. 240........ 282
21.13 Coupling by Leakages Between Transmitting and Receiving Circuits . 284
21.2 EM Coupling in Double Dipole Arrays............. 284
21.21 An Array for Zero EM Effect.............. 285
21.3 Self-Potentials..................... 285
21.4 Electrode Polarization................... 285
21.5 Electrokinetic Effects................... 286
22 IP Sounding and Profiling.................. 286
22.1 Field of a Single Dipole.................. 286
22.2 Negative IP...................... 287
22.21 Horizontal Component of Electric Field........... 287
22.22 Negative IP in Transient Operation............ 288
22.23 Negative IP in A C Operation.............. 289
22.24 Role of Self-Depletion Currents............. 289
22.3 IP Master Curves and Graphs for Interpretation.......... 289
22.4 Induced Polarization Effects Compared to Magnetism Effects...... 291
22.5 IP in Well Logging Technique................ 293
CHAPTER IV
Microscopic Theory....................294
Introduction...................... 294
Contents VII
23 Generalities of Homogeneous Materials............. 295
23.1 Conductivity and the Electrokinetic Effect............ 296
23.2 Permeability...................... 297
23.3 Diffusion....................... 297
24 Description of a Granular Structure.............. 298
24.1 Spherical Model..................... 300
24.11 Microscopic Theory by Nilsson [114]........... 301
24.12 Equations of the Problem............... 301
24.121 For Motion of Charges.............. 301
24.122 For Conservation of Matter............ 302
24.123 Laws of Electricity............... 302
24.124 Conservation of Electric Charge........... 302
24.13 Stationary Regimes.................. 302
24.14 Situation at the End of Charging Process.......... 303
24.2 Spherical Model in Uniform Polarizing Field........... 304
24.21 Conducting Core.................. 306
24.211 Dipolar Moment................ 306
24.22 Insulating Core................... 306
24.3 Macroscopic Physical Quantities for Small Ore Contents....... 307
24.4 Effect of Ro : Radius of the Core. Comparison with Experimental Results . . 308
24.5 What Happens when dja is of the Order of Magnitude 1?....... 309
24.6 Remarks About Par. 24.................. 309
24.61 Successes are.................... 309
24.62 Limitations are that................. 309
25 Transients in Plane Wave Models (Warburg s Theory [168])...... 310
26 What About Specific IP ?.................. 311
26.1 Existence of a Voltage Threshold in IP............. 311
26.2 Spontaneous Electrochemical Potential............. 313
26.21 Spherical Core in Absence of Polarizing Field......... 313
26.22 Spherical Core in Presence of an External Field........ 315
26.3 Semi-Conductor Materials................. 317
26.31 Different Modes of Conductivity............. 317
26.311 Forbidden Band................ 317
26.32 Field Equations................... 318
26.33 Solution for a Grain of Semi-Conducting Ore Embedded in a Sterile
Overburden.................... 320
27 Remark on Homogeneous vs Heterogeneous Formations....... 321
VIII Contents
28 Sample and Model Experiments................ 322
28.1 Non-linear Behaviour of High Electric Fields in Samples....... 322
28.2 Homogeneity Rule for Model Experiments............ 322
29 Conclusions....................... 323
Bibliography for Vol. 1 + Vol. 2................. 326
Subject Index....................... 335
|
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id | DE-604.BV002331853 |
illustrated | Illustrated |
indexdate | 2024-07-09T15:44:01Z |
institution | BVB |
isbn | 3443130100 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-001526650 |
oclc_num | 630867312 |
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owner | DE-91 DE-BY-TUM DE-19 DE-BY-UBM DE-12 DE-188 DE-83 |
owner_facet | DE-91 DE-BY-TUM DE-19 DE-BY-UBM DE-12 DE-188 DE-83 |
physical | XVI S., S. 252 - 335 graph. Darst. |
psigel | IFKMB1102 |
publishDate | 1976 |
publishDateSearch | 1976 |
publishDateSort | 1976 |
publisher | Borntraeger |
record_format | marc |
series | Geoexploration monographs. Series 1 |
series2 | Geoexploration monographs. Series 1 Geoexploration monographs / 1 |
spelling | Loeb, Julien Verfasser aut Experimental and theoretical aspects of induced polarization 2 Macroscopic and microscopic theories by J. Bertin and J. Loeb Berlin [u.a.] Borntraeger 1976 XVI S., S. 252 - 335 graph. Darst. txt rdacontent n rdamedia nc rdacarrier Geoexploration monographs. Series 1 7,2 Geoexploration monographs / 1 ... Bertin, Jacques Sonstige oth Loeb, Julien Sonstige oth (DE-604)BV002331850 2 Geoexploration monographs. Series 1 7,2 (DE-604)BV001902204 7,2 HBZ Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=001526650&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Loeb, Julien Experimental and theoretical aspects of induced polarization Geoexploration monographs. Series 1 |
title | Experimental and theoretical aspects of induced polarization |
title_auth | Experimental and theoretical aspects of induced polarization |
title_exact_search | Experimental and theoretical aspects of induced polarization |
title_full | Experimental and theoretical aspects of induced polarization 2 Macroscopic and microscopic theories by J. Bertin and J. Loeb |
title_fullStr | Experimental and theoretical aspects of induced polarization 2 Macroscopic and microscopic theories by J. Bertin and J. Loeb |
title_full_unstemmed | Experimental and theoretical aspects of induced polarization 2 Macroscopic and microscopic theories by J. Bertin and J. Loeb |
title_short | Experimental and theoretical aspects of induced polarization |
title_sort | experimental and theoretical aspects of induced polarization macroscopic and microscopic theories |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=001526650&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV002331850 (DE-604)BV001902204 |
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