High temperature superconducting magnetic levitation:
Gespeichert in:
Hauptverfasser: | , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Berlin
De Gruyter
[2018]
Beijing Peking University Press [2018] |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis http://www.degruyter.com/search?f_0=isbnissn&q_0=9783110538182&searchTitles=true Inhaltsverzeichnis |
Beschreibung: | xiii, 388 Seiten Illustrationen 25 cm |
ISBN: | 9783110538182 3110538180 |
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Datensatz im Suchindex
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adam_text | CONTENTS
PREFACE* XI
JIA-SU WANG AND SU-YU WANG
1 FUNDAMENTALS OF SUPERCONDUCTIVITY * 1
1.1 INTRODUCTION * 1
1.2 DISCOVERY OF SUPERCONDUCTIVITY * 2
1.3 MEISSNER-OCHSENFELD EFFECTS* 3
1.4 SUPERCONDUCTING THERMODYNAMICS * 5
1.5 LONDON EQUATIONS * 7
1.6 PENETRATION DEPTH * 8
1.7 COHERENCE LENGTH *
9
1.8 CRITICAL CURRENT DENSITIES * 11
1.9 CRITICAL MAGNETIC FIE LD S * 12
1.10 TYPE I SUPERCONDUCTORS * 14
1.11 TYPE II SUPERCONDUCTORS * 14
1.12 SPECIFIC CHARACTERISTICS OF HTSC * 16
JIA-SU WANG AND SU-YU WANG
2 SUPERCONDUCTING MATERIALS * 21
2.1 ITS MATERIALS * 21
2.2 ITS BULK MATERIALS
-----
24
2.3 HTS MATERIALS
-----
24
2.4 HTS BULK MATERIALS * 28
2.4.1 SINTERING HTS BULK MATERIALS * 28
2.4.2 MELT PROCESS HTS BULK MATERIALS
-----
30
2.4.3 DEVELOPMENTS OF HTS BULK MATERIALS * 32
2.5 THERMAL PROPERTIES OF HTS BULK
-----
36
2.5.1 SPECIFIC HEAT * 36
2.5.2 THERMAL CONDUCTIVITY
-----
39
2.5.3 THERMAL EXPANSION * 40
2.6 MECHANICAL PROPERTIES OF HTS BULK * 42
2.7 TRAPPED FLUXES IN HTS BULK
-------
45
JIA-SU WANG AND SU-YU WANG
3 MAGNETIC LEVITATION * 59
3.1 INTRODUCTION * 59
3.2 RAIL TRAFFIC - THE MAINSTREAM OF THE 21ST-CENTURY TRANSPORTATION
3.3 DEVELOPMENTS IN RAILWAY TRAFFIC * 61
3.4 LEVITATION PHENOMENON * 64
3.5 MAGNETIC LEVITATION * 66
3.6 PERMANENT MAGNET MAGLEV * 68
3.7 NORMAL-CONDUCTIVE MAGLEV * 74
JIA-SU WANG AND SU-YU WANG
4 SUPERCONDUCTING MAGNETIC LEVITATION * 87
4.1 INTRODUCTION * 87
4.2 LTS MAGLEV
-----
88
4.3 LTS MAGLEV TRAIN
-----
93
4.4 HTS MAGLEV
-----
96
4.5 HTS WIRE MAGLEV TRAIN * 98
4.6 HTS BULK MAGLEV * 101
4.7 HTS BULK MAGLEV TRAIN * 103
4.7.1 UNIQUE ADVANTAGES OF HTS BULK MAGLEV * 103
4.7.2 MODERATE-/LOW-SPEED HTS MAGLEV TRAINS * 104
4.7.3 ULTRA-HIGH-SPEED HTS MAGLEV TRAINS * 109
SU-YU WANG, JIA-SU WANG, YI-YUN LU, AND WEI LIU
5 HTS MAGLEV EXPERIMENTAL METHODS AND SET-UP * 119
5.1 INTRODUCTION * 119
5.2 KEY COMPONENTS * 121
5.2.1 PERMANENT MAGNET GUIDEWAY (PM6) * 121
5.2.2 LIQUID NITROGEN VESSEL WITH THIN BOTTOM * 121
5.3 HTS MAGLEV MEASUREMENT SYSTEM * 124
5.4 GUIDANCE FORCES OF THE HTS MAGLEV VEHICLE * 127
5.5 MEASUREMENT SYSTEM WITH MORE FUNCTIONS AND HIGHER PRECISION
5.5.1 SYSTEM DESCRIPTION * 129
5.5.2 THE FUNCTION AND TECHNICAL SPECIFICATION * 130
5.5.3 MEASUREMENT PRECISION CALIBRATION * 131
5.5.4 MEASUREMENT RESULTS OF HTS MAGLEV PROPERTIES * 135
5.6 HTS MAGLEV DYNAMIC MEASUREMENT SYSTEM * 138
5.6.1 SYSTEM DESCRIPTION * 138
5.6.2 THE FUNCTION AND TECHNICAL SPECIFICATION * 140
5.6.3 STABILITY OF DYNAMIC TEST SYSTEM * 141
5.6.4 MEASUREMENTS OF HTS MAGLEV PROPERTIES * 143
5.7 HTS MAGLEV BEARING MEASUREMENT SYSTEM * 145
JIA-SU WANG AND SU-YU WANG
6 FIRST MANNED HTS MAGLEV VEHICLE IN THE WORLD * 151
6.1 INTRODUCTION * 151
6.2 HTS MAGLEV IN NATIONAL 863 PROGRAM * 152
6.3 LEVITATION FORCES OF HTS BULK ABOVE PMG * 154
6.3.1 LEVITATION FORCES OF SINGLE HTS BULK ABOVE PMG * 154
6.3.2 LEVITATION FORCES OF A FOUR-HTS-BULK ARRAY * 156
6.3.3 LEVITATION FORCES OF SEVEN-HTS BULKS ARRAY * 157
6.3.4 COMPARISON OF LEVITATION FORCES PER UNIT LENGTH * 159
6.3.5 LEVITATION FORCES OF MULTIPLE-SEEDED MELT-GROWTH YBCO BULK * 159
6.4 LEVITATION STIFFNESS * 160
6.5 LEVITATION FORCES VS. TEMPERATURE * 161
6.6 LEVITATION FORCES VS. TRAPPED FLUX * 165
6.7 GUIDANCE FORCES OF HTS BULKS OVER PMG * 166
6.7.1 GUIDANCE FORCES OF HTS BULKS OVER SINGLE PMG * 166
6.7.2 GUIDANCE FORCES OF YBCO BULKS OVER TWO PARALLEL PMG * 169
6.7.3 GUIDANCE FORCES OF MULTIPLE SEEDED MELT GROWTH YBCO * 172
6.7.4 INFLUENCE OF TWO TILTED PMG ON THE GUIDANCE FORCES * 172
6.8 GUIDANCE FORCES STIFFNESS * 173
6.9 INFLUENCE OF HTS BULK GEOMETRY ON THE PROPERTIES * 174
6.9.1 INFLUENCE OF HTS BULK SHAPE ON THE PROPERTIES * 174
6.9.2 INFLUENCE OF HTS BULK SIZE ON THE PROPERTIES * 176
6.9.3 INFLUENCE OF HTS BULK THICKNESS ON THE PROPERTIES * 178
6.10 LEVITATION FORCES AND GUIDANCE FORCES OF RING HTS BULKS * 181
6.11 EARLY SCHEME CONSIDERATION * 182
6.12 MAGLEV OF HTS BULK ABOVE MAGNETS * 183
6.13 MAGLEV VEHICLE USING HTS PMS * 185
6.14 PERMANENT MAGNET GUIDEWAY * 190
6.15 ON-BOARD HTS MAGLEV EQUIPMENT * 192
6.16 EXPERIMENTAL RESULTS OF THE ON-BOARD MAGLEV EQUIPMENT * 193
6.17 FIRST MANNED HTS MAGLEV VEHICLE IN THE WORLD - * CENTURY* * 198
6.18 GUIDANCE FORCES OF THE ENTIRE HTS MAGLEV VEHICLE * 203
6.19 LONG-TERM STABILITY OF THE HTS MAGLEV VEHICLE IN 2001-2003 * 208
6.20 LONG-TERM STABILITY OF YBCO BULKS IN 2001-2009 * 210
GUANG-TONG MA AND YI-YUN LU
7 NUMERICAL SIMULATIONS OF HTS MAGLEV
* 217
7.1 INTRODUCTION * 217
7.2 MAXWELL S EQUATIONS * 218
7.2.1 AMPERE*S LAW WITH MAXWELL*S ADDITION * 218
7.2.2 FARADAY*S LAW * 219
7.2.3 GAUSS*S LAW * 219
7.2.4 CONSERVATION OF MAGNETIC FLUX DENSITY * 220
7.3 MACROSCOPIC ELECTROMAGNETIC PROPERTIES OF HTSC * 220
7.3.1 NONLINEAR CONSTITUTIVE EQUATION * 220
7.3.2 ANISOTROPY
-----
222
7.4 CALCULATION OF THE MAGNETIC FIELD OF PMG * 222
7.4.1 TWO-DIMENSIONAL CASE * 222
7.4.2 THREE-DIMENSIONAL CASE * 223
7.5 TWO-DIMENSIONAL MODELINGS AND SIMULATIONS
-----
226
7.5.1 PRIGOZHIN*S MODEL * 226
7.5.2 GENERALIZED MAGNETIC VECTOR POTENTIAL * 230
7.6 THREE-DIMENSIONAL MODELING AND SIMULATIONS * 240
7.6.1 H-FORMULATION * 240
7.6.2 7 METHOD
-----
246
JUN ZHENG, ZI-GANG DENG, JIA-SU WANG, AND SU-YU WANG
8 NEW PROGRESS OF HTS MAGLEV VEHICLE * 261
8.1 INTRODUCTION * 261
8.2 DYNAMIC CHARACTERISTICS * 263
8.2.1 VIBRATION PERFORMANCE * 263
8.2.2 DYNAMIC MAGLEV CHARACTERISTICS UNDER MOVING APPLIED MAGNETIC
FIE LD
-----
270
8.2.3 LEVITATION PERFORMANCE AT DIFFERENT WORKING TEMPERATURES * 275
8.3 METHODS TO IMPROVE MAGLEV PERFORMANCES * 281
8.3.1 PRE-LOADING METHOD * 281
8.3.2 MAGNETIZATION PROCESS * 285
8.3.3 AN ON-BOARD DOUBLE-LAYERED HTSC ARRAY * 291
8.3.4 A LAYING MODE USING THE C-AXIS ORIENTATION OF BULK HTSC * 295
8.3.5 INTRODUCTION OF FERROMAGNETIC MATERIALS * 299
8.4 SOME DEVELOPED DESIGNS OF THE HTS MAGLEV VEHICLE SYSTEM * 302
8.4.1 MULTI-POLE PM GUIDEWAY STRUCTURE * 302
8.4.2 A T-SHAPED HTS MAGLEV MONORAIL SYSTEM * 308
8.4.3 AN ASYMMETRIC HTS MAGLEV CURVE DESIGN * 311
8.5 NEW DEVELOPMENTS IN HTS MAGLEV VEHICLE SYSTEM * 314
8.5.1 AN 8-M-DIAMETER PM GUIDEWAY TEST LINE * 314
8.5.2 A 45-M-LONG HTS MAGLEV RING TEST LINE * SUPER-MAGLEV* * 317
8.5.3 ETTHTS MAGLEV
-----
319
ZI-GANG DENG, QUN-XU LIN, WEI LIU, JIA-SU WANG, AND SU-YU WANG
9 HTS MAGLEV BEARING AND FLYWHEEL ENERGY STORAGE SYSTEM * 325
9.1 INTRODUCTION
-----
325
9.2 CHARACTERISTICS OF HTSB * 327
9.2.1 AXIAL STIFFNESS CHARACTERISTICS OF HTSB * 329
9.2.2 CALCULATION METHOD OF RADIAL STIFFNESS * 332
9.2.3 DEFLECTION ANGLE STIFFNESS * 335
9.3 APPLICATION OF HTSB
-----
336
9.3.1 TYPICAL APPLICATIONS * 336
9.3.2 LIQUID NITROGEN PUMP * 338
9.3.3 FUTURE DEVELOPMENT OF HTSB * 343
9.4 HTS FESS PRINCIPLE MODEL
------
343
9.4.1 INTRODUCTION OF FESS
-----
343
9.4.2 HTS MAGLEV FESS
-----
346
9.4.3 DOUBLE ASBS SYSTEM
-----
348
9.4.4 FESS MODEL WITH DOUBLE ASBS
-----
350
9.5 DEVELOPMENT OF A 5-KWH HTS FESS PROTOTYPE * 352
9.5.1 DESIGN AND CONSTITUTION * 352
9.5.2 HTS MAGLEV BEARING
-----
353
9.5.3 FLYWHEEL ROTOR
-----
353
9.5.4 MOTOR/GENERATOR* 355
9.5.5 PM ASSISTANT BEARING * 356
9.5.6 CUSTOMIZED MACHINING EQUIPMENT * 356
9.5.7 COMPLETE HTS FESS TEST SYSTEM
-----
357
9.6 APPLICATION OF HTS FESS
-----
359
9.6.1 SUBWAY REGENERATIVE BRAKING * 359
9.6.2 RENEWABLE ENERGY SYSTEM * 360
9.6.3 POWER GRID SYSTEM * 360
9.6.4 UNINTERRUPTED POWER SUPPLY * 361
9.6.5 ELECTROMAGNETIC LAUNCH AND WEAPON * 361
9.6.6 ELECTRIC VEHICLE * 362
9.7 SUMMARY
-----
362
WEI LIU, JING LI, JIA-SU WANG, AND SU-YU WANG
10 HTS MAGLEV LAUNCH TECHNOLOGY * 369
10.1 INTRODUCTION * 369
10.2 REPEATABLE ELECTROMAGNETIC LAUNCH SYSTEM * 370
10.3 PRELIMINARY RESEARCH ON HTS MAGLEV LAUNCH TECHNOLOGY
10.4 PROTOTYPES OF HTS MAGLEV LAUNCH SYSTEM * 373
10.5 CONCEPTS OF HTS REL SYSTEM
-----
376
10.6 STUDIES ON HTS LINEAR SYNCHRONOUS MOTOR * 377
10.6.1 THE 26 HTS COIL-TYPE EXCITATION SYSTEM * 378
10.6.2 BULK HTSC TYPE EXCITATION SYSTEM * 381
10.7 STUDIES ON HTS LINEAR INDUCTION MOTORS * 383
ACRONYMS AND ABBREVIATIONS * 387
|
any_adam_object | 1 |
author | Wang, Jia-Su Wang, Su-Yu |
author_facet | Wang, Jia-Su Wang, Su-Yu |
author_role | aut aut |
author_sort | Wang, Jia-Su |
author_variant | j s w jsw s y w syw |
building | Verbundindex |
bvnumber | BV044799853 |
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dewey-ones | 537 - Electricity and electronics 621 - Applied physics |
dewey-raw | 537.623 621.34 |
dewey-search | 537.623 621.34 |
dewey-sort | 3537.623 |
dewey-tens | 530 - Physics 620 - Engineering and allied operations |
discipline | Physik Elektrotechnik / Elektronik / Nachrichtentechnik |
format | Book |
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isbn | 9783110538182 3110538180 |
language | English |
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physical | xiii, 388 Seiten Illustrationen 25 cm |
publishDate | 2018 |
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spelling | Wang, Jia-Su Verfasser aut High temperature superconducting magnetic levitation Jia-Su Wang and Su-Yu Wang Berlin De Gruyter [2018] Beijing Peking University Press [2018] xiii, 388 Seiten Illustrationen 25 cm txt rdacontent n rdamedia nc rdacarrier Magnetschwebetechnik (DE-588)4699539-0 gnd rswk-swf Hochtemperatursupraleitung (DE-588)4200190-0 gnd rswk-swf Hochtemperatursupraleitung (DE-588)4200190-0 s Magnetschwebetechnik (DE-588)4699539-0 s DE-604 Wang, Su-Yu Verfasser aut Walter de Gruyter GmbH & Co. KG (DE-588)10095502-2 pbl Erscheint auch als Online-Ausgabe Wang, Jia-Su High Temperature Superconducting Magnetic Levitation Berlin/Boston : De Gruyter, 2017 Online-Ressourcen, 401 Seiten B:DE-101 application/pdf http://d-nb.info/1129274624/04 Inhaltsverzeichnis X:MVB http://www.degruyter.com/search?f_0=isbnissn&q_0=9783110538182&searchTitles=true DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=030194834&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Wang, Jia-Su Wang, Su-Yu High temperature superconducting magnetic levitation Magnetschwebetechnik (DE-588)4699539-0 gnd Hochtemperatursupraleitung (DE-588)4200190-0 gnd |
subject_GND | (DE-588)4699539-0 (DE-588)4200190-0 |
title | High temperature superconducting magnetic levitation |
title_auth | High temperature superconducting magnetic levitation |
title_exact_search | High temperature superconducting magnetic levitation |
title_full | High temperature superconducting magnetic levitation Jia-Su Wang and Su-Yu Wang |
title_fullStr | High temperature superconducting magnetic levitation Jia-Su Wang and Su-Yu Wang |
title_full_unstemmed | High temperature superconducting magnetic levitation Jia-Su Wang and Su-Yu Wang |
title_short | High temperature superconducting magnetic levitation |
title_sort | high temperature superconducting magnetic levitation |
topic | Magnetschwebetechnik (DE-588)4699539-0 gnd Hochtemperatursupraleitung (DE-588)4200190-0 gnd |
topic_facet | Magnetschwebetechnik Hochtemperatursupraleitung |
url | http://d-nb.info/1129274624/04 http://www.degruyter.com/search?f_0=isbnissn&q_0=9783110538182&searchTitles=true http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=030194834&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT wangjiasu hightemperaturesuperconductingmagneticlevitation AT wangsuyu hightemperaturesuperconductingmagneticlevitation AT walterdegruytergmbhcokg hightemperaturesuperconductingmagneticlevitation |
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