Korrosionsschutz durch organische Beschichtung: ein praxisorientierter Leitfaden nach DIN 55928
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | German |
Veröffentlicht: |
München u.a.
Hanser
1994
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | 344 S. Ill., graph. Darst. |
ISBN: | 3446175148 |
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CONTENTS
LIST OF SYMBOLS XIII
CHAPTER 1 INTRODUCTION
1.1. PREFACE TO THE NEW EDITION 1
1.2. INTRODUCTORY REMARKS ADAPTED FROM THE FIRST EDITION 3
1.3. REFERENCES 10
CHAPTER 2 BASIC ELECTROMAGNETIC LAWS AND MAXWELL S EQUATIONS
INTRODUCTION 11
2.1. COULOMB S LAW 11
2.1.1. NORMAL COMPONENT OF THE ELECTRIC FIELD CAUSED BY A PLANAR CHARGE
DISTRIBUTION 16
2.1.2. EFFECT OF A CONDUCTOR SITUATED WITHIN AN ELECTRIC FIELD 21
2.2. BIOT-SAVART LAW 43
2.2.1. EXAMPLE I: THE MAGNETIC FIELD OF A STRAIGHT WIRE 52
2.2.2 EXAMPLE II: THE MAGNETIC FIELD OF A CURRENT FLOWING IN A
RECTANGULAR LOOP 55
2.2.3. EXAMPLE III: THE VECTOR POTENTIAL AND MAGNETIC FIELD OF A CURRENT
FLOWING IN A CIRCULAR LOOP 56
2.2.4. EXAMPLE IV: THE MAGNETIC FIELD OF A CURRENT FLOWING IN A WIRE
GROUNDED AT THE SURFACE OF A HORIZONTALLY LAYERED MEDIUM 61
2.3. THE POSTULATE OF CONSERVATION OF CHARGE AND THE DISTRIBUTION OF
CHARGES IN A CONDUCTING MEDIUM 66
2.3.1. EXAMPLE I: EXPONENTIAL VARIATION 75
2.3.2. EXAMPLE II: SINUSOIDAL VARIATION 76
2.4. FARADAY S LAW AND THE FIRST MAXWELL EQUATION 81
2.4.1. EXAMPLE I. THE VORTEX ELECTRIC FIELD OF A SOLENOID 85
2.4.2. EXAMPLE II. THE VORTEX ELECTRIC FIELD OF A MAGNETIC DIPOLE 87
2.4.3. EXAMPLE III. THE VORTEX ELECTRIC FIELD OF A CIRCULAR LOOP 90
2.4.4. EXAMPLE IV. THE VORTEX ELECTRIC FIELD OF AN INFINITELY LONG
CURRENT FILAMENT 93
2.4.5. EXAMPLE V. THE VORTEX ELECTRIC FIELD OF A UNIFORM MAGNETIC
FIELD.... 95 2.4.6. EXAMPLE VI. INDUCTIVE CURRENTS IN A THIN CONDUCTING
RING SITUATED WITHIN AN ALTERNATING FIELD 97
2.4.6.1. TRANSIENT PRIMARY MAGNETIC FIELD 100
2.4.6.2. HARMONIC PRIMARY MAGNETIC FIELD 104
2.4.7. EXAMPLE VII. BEHAVIOR OF THE ELECTROMAGNETIC FIELD AT THE EARLY
STAGE AND AT HIGH FREQUENCIES IN A CONDUCTIVE MEDIUM 110
2.5. ELECTROMAGNETIC FIELD EQUATIONS 113
2.6. RELATIONSHIPS BETWEEN VARIOUS EM FIELD COMPONENTS 126
2.7. SUMMARY 138
2.8. REFERENCES 141
IMAGE 2
CHAPTER 3 FREQUENCY AND TIME-DOMAIN BEHAVIOR OF THE FIELD
CAUSED BY CURRENTS INDUCED IN A CONFINED CONDUCTOR INTRODUCTION 143
3.1. A CONDUCTIVE SPHERE IN A UNIFORM STATIONARY MAGNETIC FIELD
(FREQUENCY DOMAIN) 143
3.2. A CONDUCTIVE SPHERE IN A UNIFORM NON-STATIONARY MAGNETIC FIELD
(TIME DOMAIN) 161
3.3. A CONDUCTIVE SPHERE ENERGIZED BY THE MAGNETIC FIELD OF A CIRCULAR
LOOP WITH AXIAL SYMMETRY 179
3.4. EQUATIONS FOR THE FREQUENCY AND TIME-DOMAIN FIELDS CAUSED BY
INDUCED CURRENTS IN A SPHERICAL CONDUCTOR WITH AXIAL SYMMETRY 194
3.5. THE CHARACTERISTICS OF THE FREQUENCY AND TRANSIENT RESPONSES CAUSED
BY A SPHERICAL CONDUCTOR WITH AXIAL SYMMETRY 204
3.6 A RIGHT CIRCULAR CYLINDER IN A UNIFORM MAGNETIC FIELD 235
3.7. A RIGHT CIRCULAR CYLINDER IN A FIELD CREATED BY AN INFINITELY LONG
CURRENT FILAMENT 245
3.8. EQUATIONS FOR THE FREQUENCY AND TIME-DOMAIN FIELDS CAUSED BY
INDUCED CURRENTS IN A CYLINDRICAL CONDUCTOR WITH AN ARBITRARY
CROSS-SECTION 259
3.9. THE CHARACTERISTICS OF THE FREQUENCY AND TRANSIENT RESPONSES CAUSED
BY A CYLINDRICAL CONDUCTOR WITH AN ARBITRARY CROSS-SECTION 264
3.10. A CONDUCTING SPHERE IN THE FIELD OF AN ARBITRARILY ORIENTED
MAGNETIC DIPOLE SOURCE 292
3.11. A CIRCULAR CYLINDER IN THE FIELD OF AN ARBITRARILY ORIENTED
MAGNETIC DIPOLE SOURCE 296
3.11.1. AXIAL MAGNETIC DIPOLE 303
3.11.2. RADIAL MAGNETIC DIPOLE 304
3.11.3. AZIMUTHAL MAGNETIC DIPOLE 304
3.11.4. ANALYSIS OF THE FUNCTION A N 306
3.12. SUMMARY 323
3.13. REFERENCES 328
CHAPTER 4 RESOLVING CAPABILITIES AND DEPTH OF INVESTIGATION OF INDUCTIVE
METHODS WHEN GEOLOGIC NOISE IS A CONFINED INHOMOGENEITY INTRODUCTION 329
4.1. FREQUENCY-DOMAIN METHODS 334
4.2. TIME-DOMAIN METHODS 340
4.3. COMPARING RESOLUTION AND DEPTH OF INVESTIGATION IN THE FREQUENCY
AND TIME DOMAINS USING SPHEROID MODELS 342
4.4. SUMMARY 361
CHAPTER 5 THE EFFECT OF INDUCED CURRENTS IN THE HOST MEDIUM ON THE
FREQUENCY AND TRANSIENT RESPONSES CAUSED BY A CONFINED CONDUCTOR 5.1.
THE NORMAL FIELD DUE TO CURRENTS IN THE HOST MEDIUM 365
IMAGE 3
5.1.1. OBSERVATION POINT AT THE CENTER OF THE SOURCE LOOP 366
5.1.1.1. UNIFORM FULL-SPACE 366
5.1.1.2. UNIFORM HALF-SPACE 370
5.1.1.3. THIN CONDUCTIVE SHEET 373
5.1.1.4. TWO-LAYER MEDIUM 378
5.1.2. ELECTROMOTIVE FORCE INDUCED IN COMBINED LOOPS 385
5.1.2.1. UNIFORM FULL-SPACE 385
5.1.2.2. UNIFORM HALF-SPACE 391
5.1.2.3. THIN CONDUCTIVE SHEET AND A TWO-LAYER MEDIUM 394
5.1.3. CONCLUDING REMARKS 398
5.2. THE INFLUENCE OF CURRENTS INDUCED IN THE HOST MEDIUM ON THE
SECONDARY ELECTROMAGNETIC FIELD OF A CONFINED CONDUCTOR 402
5.2.1. THE RESPONSE OF A SPHEROID IN A UNIFORM CONDUCTIVE FULL-SPACE 402
5.2.2. THE QUADRATURE COMPONENT FOR A SPHEROID IN A FULL-SPACE 405
5.2.3. THE QUADRATURE COMPONENT FOR A SPHEROID BENEATH A THIN SHEET OR
WITHIN A TWO-LAYER MEDIUM 413
5.2.4. THE INPHASE COMPONENT FOR A SPHEROID IN A FULL-SPACE 415
5.2.5. THE INPHASE COMPONENT FOR A SPHEROID BENEATH A THIN SHEET OR
WITHIN A TWO-LAYER MEDIUM 420
5.2.6. THE DIFFERENCE OF QUADRATURE COMPONENTS FOR A SPHEROID IN A
FULLSPACE, BENEATH A THIN SHEET, OR WITHIN A TWO-LAYER MEDIUM 424
5.2.7. THE TRANSIENT FIELD FOR A SPHEROID IN A FULL-SPACE, BENEATH A
THIN SHEET, OR WITHIN A TWO-LAYER MEDIUM 428
5.3 AN APPROXIMATE METHOD FOR CALCULATING THE FIELDS CAUSED BY VORTEX
CURRENTS 441
5.4. SUMMARY 456
5.5. REFERENCES 459
CHAPTER 6 THE EFFECT OF SURFACE ELECTRICAL CHARGE ON THE BEHAVIOR OF
SECONDARY ELECTROMAGNETIC FIELDS INTRODUCTION 461
6.1. GENERAL EXPRESSIONS FOR THE ELECTROMAGNETIC FIELDS OF A CONDUCTIVE
SPHERE 462 6.1.1. ELECTRIC AND MAGNETIC FIELD EQUATIONS 462
6.1.2. THE POTENTIAL FOR OSCILLATIONS OF THE ELECTRIC TYPE (H R=0) 465
6.1.3. THE POTENTIAL FOR OSCILLATIONS OF THE MAGNETIC TYPE (E R =0) 467
6.1.4. BOUNDARY CONDITIONS FOR THE POTENTIALS U 1 AND U2 AT THE SURFACE
OF THE SPHERE , 469
6.1.5. SOLUTIONS TO THE HELMHOLTZ EQUATION FOR POTENTIALS IN A SPHERICAL
COORDINATE SYSTEM 469
6.1.6. POTENTIALS OF THE ELECTRIC AND MAGNETIC TYPES FOR THE PRIMARY
FIELD ... 471 6.1.7. POTENTIALS OF THE ELECTRIC AND MAGNETIC TYPES FOR
THE SECONDARY FIELD 480 6.2. A CONDUCTIVE SPHERE IN A PLANE WAVE FIELD
482
6.3. A CONDUCTIVE SPHERE IN A MAGNETIC DIPOLE FIELD 491
6.3.1. RADIAL MAGNETIC DIPOLE SOURCE 491
6.3.2. TRANSVERSE MAGNETIC DIPOLE SOURCE 495
6.3.3. THE RATIO OF THE QUADRATURE COMPONENTS OF THE MAGNETIC FIELD 501
IMAGE 4
6.3.4. THE RATIO OF THE INPHASE COMPONENTS OF THE MAGNETIC FIELD 506
6.3.5. THE RATIO OF THE VORTEX AND GALVANIC PARTS OF THE MAGNETIC FIELD
IN THE DUAL-FREQUENCY METHOD 510
6.3.6. THE RATIO OF THE VORTEX AND GALVANIC PARTS OF THE TRANSIENT
MAGNETIC FIELD 513
6.4. A CONDUCTIVE CYLINDER IN THE FIELD OF AN INFINITELY LONG CURRENT
FILAMENT PARALLEL TO THE AXIS OF THE CYLINDER 518
6.4.1. THE NORMAL FIELD OF A CURRENT FILAMENT 518
6.4.2. FREQUENCY-DOMAIN RESPONSE OF THE SECONDARY FIELD CAUSED BY THE
PRESENCE OF A CYLINDER 526
6.4.3. TIME-DOMAIN RESPONSE OF THE SECONDARY FIELD CAUSED BY THE
PRESENCE OF A CYLINDER 537
6.4.4. CONSIDERATIONS REGARDING FINITE LENGTH, CYLINDRICALLY-SHAPED
CONDUCTORS 538
6.5. A CONDUCTIVE CYLINDER IN THE FIELD OF A MAGNETIC DIPOLE 545
6.5.1. ASYMPTOTIC RELATIONSHIPS FOR THE GALVANIC CONTRIBUTION 562
6.5.1.1. SOURCE MOMENT IS ORIENTED ALONG THE AXIS OF THE CONDUCTOR 563
6.5.1.2. SOURCE MOMENT IS NOT ORIENTED ALONG THE AXIS OF THE CONDUCTOR
566
6.5.2. THE TRANSIENT RESPONSE OF THE CYLINDER 576
6.6. SUMMARY 579
6.7. REFERENCES 582
CHAPTER 7 RESOLVING CAPABILITIES OF AIRBORNE INDUCTIVE METHODS
INTRODUCTION 583
7.1. THE SIGNAL-TO-GEOLOGIC-NOISE RATIO 584
7.2. AIRBORNE ELECTROMAGNETICS 585
7.3. DESCRIPTION OF THE STUDY 587
7.3.1. PRACTICAL MOTIVATIONS AND CONSTRAINTS 587
7.3.2. THE SYSTEMS CONSIDERED IN THE STUDY 589
7.3.3. THE MODELS CONSIDERED IN THE STUDY 592
7.3.4. MODELING SOFTWARE AND PLOTTING ISSUES 596
7.3.5. AN AIRBORNE IMPEDANCE SYSTEM 599
7.3.5.1. AIRBORNE WAVE IMPEDANCE FOR A VERTICAL-AXIS DIPOLE OVER A
HOMOGENEOUS EARTH 601
7.3.5.2. AIRBORNE WAVE IMPEDANCE FOR A HORIZONTAL-AXIS DIPOLE OVER A
HOMOGENEOUS EARTH 605
7.4. LAYERED-EARTH MODELING RESULTS AND ANALYSIS 609
7.4.1. VARIATIONS IN BASEMENT RESISTIVITY - NEARBY RECEIVER 610
7.4.2. VARIATIONS IN OVERBURDEN THICKNESS - NEARBY RECEIVER 613
7.4.3. VARIATIONS IN BASEMENT RESISTIVITY - OFFSET RECEIVER 615
7.4.4. VARIATIONS IN OVERBURDEN THICKNESS - OFFSET RECEIVER 620
7.4.5. SOME CONCLUSIONS DRAWN FROM THE ANALYSIS OF AIRBORNE EM MODELING
RESULTS FOR LAYERED-EARTH MODELS 624
IMAGE 5
7.5. THREE-DIMENSIONAL MODELING RESULTS AND ANALYSIS 626
7.5.1. MODEL 2: A CONDUCTIVE DIKE 628
7.5.1.1. TEM SYSTEM RESULTS 628
7.5.1.2. HCP SYSTEM RESULTS 633
7.5.1.3. VCP AND VCA SYSTEM RESULTS 639
7.5.2. MODEL 3: A CONDUCTIVE OR RESISTIVE BLOCK 643
7.5.2.1. CONDUCTIVE TARGET - VARIABLE OVERBURDEN THICKNESS MODELS. 643
7.5.2.2. RESISTIVE TARGET - VARIABLE OVERBURDEN THICKNESS MODELS 650
7.5.2.3. VARIABLE TARGET RESISTIVITY - FIXED OVERBURDEN THICKNESS MODELS
655
7.5.3. MODEL 4: A BURIED ANTICLINE 661
7.5.3.1. BURIED CONDUCTIVE ANTICLINE MODELS 661
7.5.3.2. BURIED RESISTIVE ANTICLINE MODELS 670
7.5.4. SOME CONCLUSIONS DRAWN FROM THE ANALYSIS OF AIRBORNE EM MODELING
RESULTS FOR THREE-DIMENSIONAL MODELS 675
7.6. RECOMMENDATIONS FOR AIRBORNE ELECTROMAGNETIC PROSPECTING SYSTEMS
677 7.7. REFERENCES 680
SUBJECT INDEX
|
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author | Peters, Udo |
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ctrlnum | (OCoLC)246894597 (DE-599)BVBBV009686609 |
discipline | Physik Werkstoffwissenschaften Fertigungstechnik Werkstoffwissenschaften / Fertigungstechnik |
format | Book |
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id | DE-604.BV009686609 |
illustrated | Illustrated |
indexdate | 2024-07-09T17:39:12Z |
institution | BVB |
isbn | 3446175148 |
language | German |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-006406089 |
oclc_num | 246894597 |
open_access_boolean | |
owner | DE-12 DE-91 DE-BY-TUM DE-29T DE-859 DE-M347 DE-703 DE-92 DE-210 DE-1046 DE-898 DE-BY-UBR DE-523 DE-526 DE-634 DE-83 DE-B1550 |
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physical | 344 S. Ill., graph. Darst. |
publishDate | 1994 |
publishDateSearch | 1994 |
publishDateSort | 1994 |
publisher | Hanser |
record_format | marc |
spelling | Peters, Udo Verfasser aut Korrosionsschutz durch organische Beschichtung ein praxisorientierter Leitfaden nach DIN 55928 Udo Peters München u.a. Hanser 1994 344 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Organische Beschichtung (DE-588)4206605-0 gnd rswk-swf Schutzschicht (DE-588)4180280-9 gnd rswk-swf Korrosionsschutz (DE-588)4032522-2 gnd rswk-swf Korrosionsschutz (DE-588)4032522-2 s Organische Beschichtung (DE-588)4206605-0 s DE-604 Schutzschicht (DE-588)4180280-9 s OEBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=006406089&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Peters, Udo Korrosionsschutz durch organische Beschichtung ein praxisorientierter Leitfaden nach DIN 55928 Organische Beschichtung (DE-588)4206605-0 gnd Schutzschicht (DE-588)4180280-9 gnd Korrosionsschutz (DE-588)4032522-2 gnd |
subject_GND | (DE-588)4206605-0 (DE-588)4180280-9 (DE-588)4032522-2 |
title | Korrosionsschutz durch organische Beschichtung ein praxisorientierter Leitfaden nach DIN 55928 |
title_auth | Korrosionsschutz durch organische Beschichtung ein praxisorientierter Leitfaden nach DIN 55928 |
title_exact_search | Korrosionsschutz durch organische Beschichtung ein praxisorientierter Leitfaden nach DIN 55928 |
title_full | Korrosionsschutz durch organische Beschichtung ein praxisorientierter Leitfaden nach DIN 55928 Udo Peters |
title_fullStr | Korrosionsschutz durch organische Beschichtung ein praxisorientierter Leitfaden nach DIN 55928 Udo Peters |
title_full_unstemmed | Korrosionsschutz durch organische Beschichtung ein praxisorientierter Leitfaden nach DIN 55928 Udo Peters |
title_short | Korrosionsschutz durch organische Beschichtung |
title_sort | korrosionsschutz durch organische beschichtung ein praxisorientierter leitfaden nach din 55928 |
title_sub | ein praxisorientierter Leitfaden nach DIN 55928 |
topic | Organische Beschichtung (DE-588)4206605-0 gnd Schutzschicht (DE-588)4180280-9 gnd Korrosionsschutz (DE-588)4032522-2 gnd |
topic_facet | Organische Beschichtung Schutzschicht Korrosionsschutz |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=006406089&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT petersudo korrosionsschutzdurchorganischebeschichtungeinpraxisorientierterleitfadennachdin55928 |