Superconductors in the Power Grid: Materials and Applications: Woodhead Publishing Series in Energy
Editat de C. Reyen Limba Engleză Hardback – 22 apr 2015
- Expert editor from highly respected US government-funded research centre
- Unique focus on superconductors in the power grid
- Comprehensive coverage
Din seria Woodhead Publishing Series in Energy
- Preț: 1005.08 lei
- Preț: 853.22 lei
- 24% Preț: 1305.93 lei
- 24% Preț: 1207.30 lei
- 24% Preț: 1384.80 lei
- 9% Preț: 898.86 lei
- 9% Preț: 1066.18 lei
- 29% Preț: 1069.79 lei
- 9% Preț: 948.92 lei
- 29% Preț: 1069.47 lei
- 9% Preț: 1009.92 lei
- 9% Preț: 1307.32 lei
- 39% Preț: 1046.04 lei
- 9% Preț: 947.75 lei
- 24% Preț: 1686.04 lei
- 9% Preț: 1344.70 lei
- 9% Preț: 1047.93 lei
- 27% Preț: 1898.07 lei
- 24% Preț: 1516.65 lei
- 24% Preț: 1073.00 lei
- 29% Preț: 979.72 lei
- 9% Preț: 1395.06 lei
- 39% Preț: 1395.30 lei
- 9% Preț: 944.41 lei
- 9% Preț: 1511.74 lei
- 9% Preț: 1072.21 lei
- 9% Preț: 1018.66 lei
- 39% Preț: 879.45 lei
- 9% Preț: 949.46 lei
- 39% Preț: 1224.05 lei
- 9% Preț: 1212.21 lei
- 39% Preț: 1084.30 lei
- 9% Preț: 867.08 lei
- 24% Preț: 1613.43 lei
- 31% Preț: 926.25 lei
- 24% Preț: 1076.19 lei
- 9% Preț: 944.57 lei
- 9% Preț: 1163.53 lei
- 24% Preț: 1305.93 lei
- 29% Preț: 1211.61 lei
- 24% Preț: 1073.59 lei
- 24% Preț: 1046.82 lei
- 29% Preț: 1451.97 lei
- 39% Preț: 1283.29 lei
- 9% Preț: 951.20 lei
- 24% Preț: 876.68 lei
- 9% Preț: 950.52 lei
- 9% Preț: 1207.55 lei
Preț: 950.57 lei
Preț vechi: 1044.58 lei
-9% Nou
Puncte Express: 1426
Preț estimativ în valută:
181.92€ • 188.97$ • 151.11£
181.92€ • 188.97$ • 151.11£
Carte tipărită la comandă
Livrare economică 25 ianuarie-08 februarie 25
Preluare comenzi: 021 569.72.76
Specificații
ISBN-13: 9781782420293
ISBN-10: 1782420290
Pagini: 462
Dimensiuni: 152 x 229 x 24 mm
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Energy
ISBN-10: 1782420290
Pagini: 462
Dimensiuni: 152 x 229 x 24 mm
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Energy
Public țintă
R&D professionals and managers in energy technologies companies and utility companies. Postgraduate students and academic/government-employed researchers with an interest in electricity transmission and/or superconductivity.Cuprins
Part One Fundamentals and materials
1 The power grid and the impact of high temperature superconductor technology: An overview
A. P. Malozemoff, American Superconductor (AMSC), USA
2 Fundamentals of superconductivity
C. M. Rey (Energy to Power Solutions (E2P) and A.P. Malozemoff, American Superconductor (AMSC), USA
3 Bismuth-based oxide (BSCCO) high temperature superconducting cables and wires for power grid applications: Properties and fabrication
K. Sato, Sumitomo Electric Industries Ltd., Japan
4 Second generation (2G) coated high temperature superconducting cables and wires for power grid applications
M. W. Rupich, American Superconductor (AMSC), USA
Part Two high temperature superconducting (HTS) cable technology
5 High temperature superconducting (HTS) AC cables for power grid applications
A. P. Malozemoff, J. Yuan, American Superconductor (AMSC), USA and C. M. Rey Energy to Power Solutions (E2P), USA
6 Using superconducting DC cables to improve the efficiency of electricity transmission and distribution (T&D) networks: An overview
C. Bruzek, Nexans, France
7 High temperature superconducting (HTS) GHe DC cables for power grid applications
S. Pamidi, Florida State University, USA
8 High temperature superconducting cable cooling systems for power grid applications
J. A. Demko, LeTourneau University, USA
Part Three Applications
9 High temperature superconducting fault current limiters (FCLs) for power grid applications
V. Meerovich, Ben-Guiron University of the Negev, Israel
10 High temperature superconducting motors and generators for power grid applications
J. W. Bray, GE Global Research, USA
11 High temperature superconducting magnetic energy storage (SMES) for power grid applications
T. A. Coombs, Cambridge University, UK
12 High temperature superconducting (HTS) transformers for power grid applications
R. G. Buckley, Victoria University of Wellington, Australia
13 Implementing high temperature superconductors for the power grid in practice: The case of China
L. Y. Xiao, Chinese Academy of Sciences, China
1 The power grid and the impact of high temperature superconductor technology: An overview
A. P. Malozemoff, American Superconductor (AMSC), USA
2 Fundamentals of superconductivity
C. M. Rey (Energy to Power Solutions (E2P) and A.P. Malozemoff, American Superconductor (AMSC), USA
3 Bismuth-based oxide (BSCCO) high temperature superconducting cables and wires for power grid applications: Properties and fabrication
K. Sato, Sumitomo Electric Industries Ltd., Japan
4 Second generation (2G) coated high temperature superconducting cables and wires for power grid applications
M. W. Rupich, American Superconductor (AMSC), USA
Part Two high temperature superconducting (HTS) cable technology
5 High temperature superconducting (HTS) AC cables for power grid applications
A. P. Malozemoff, J. Yuan, American Superconductor (AMSC), USA and C. M. Rey Energy to Power Solutions (E2P), USA
6 Using superconducting DC cables to improve the efficiency of electricity transmission and distribution (T&D) networks: An overview
C. Bruzek, Nexans, France
7 High temperature superconducting (HTS) GHe DC cables for power grid applications
S. Pamidi, Florida State University, USA
8 High temperature superconducting cable cooling systems for power grid applications
J. A. Demko, LeTourneau University, USA
Part Three Applications
9 High temperature superconducting fault current limiters (FCLs) for power grid applications
V. Meerovich, Ben-Guiron University of the Negev, Israel
10 High temperature superconducting motors and generators for power grid applications
J. W. Bray, GE Global Research, USA
11 High temperature superconducting magnetic energy storage (SMES) for power grid applications
T. A. Coombs, Cambridge University, UK
12 High temperature superconducting (HTS) transformers for power grid applications
R. G. Buckley, Victoria University of Wellington, Australia
13 Implementing high temperature superconductors for the power grid in practice: The case of China
L. Y. Xiao, Chinese Academy of Sciences, China