Single-phase, Two-phase and Supercritical Natural Circulation Systems: Woodhead Publishing Series in Energy
Autor Pallippattu Krishnan Vijayan, Arun K. Nayak, Naveen Kumaren Limba Engleză Paperback – 19 iun 2019
This book is invaluable for engineers, designers, operators and consultants in nuclear, mechanical, electrical and chemical disciplines.
- Presents single-phase, two-phase and supercritical natural circulation systems together in one resource to fill an existing knowledge gap
- Guides the reader through relevant processes, such as designing, analyzing and generating stability maps and natural circulation loops, calculating heat transport capabilities, and maintaining natural circulation system operations
- Includes global case studies and examples to increase understanding, along with important IAEA standards and procedures
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Specificații
ISBN-13: 9780081024867
ISBN-10: 008102486X
Pagini: 650
Dimensiuni: 152 x 229 mm
Greutate: 0.86 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Energy
ISBN-10: 008102486X
Pagini: 650
Dimensiuni: 152 x 229 mm
Greutate: 0.86 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Energy
Public țintă
Intended for nuclear, mechanical, chemical & electrical engineering disciplines; engineers involved in the design, construction & operation of nuclear, fossil-fuelled and solar-thermal power plants; heat transfer and cooling system engineers and researchers; safety analysis specialists of regulatory bodies such as USNRC, IAEA, AERBCuprins
1. Natural circulation loops—advantages, challenges, and classification
2. Review of applications of natural circulation systems
3. Governing differential equations for natural circulation systems
4. Steady-state and transient performance of single-phase natural circulation systems
5. Steady-state and transient analysis of two-phase natural circulation systems
6. Steady-state and transient analysis of supercritical natural circulation systems
7. Instabilities in natural circulation systems
8. Stability analysis of natural circulation systems
9. Modeling of instabilities in multichannel natural circulation boiling water reactors
10. Design of natural circulationbased systems
11. Coupled natural circulation systems
12. Scaling philosophy for natural circulation systems
13. Thermosyphon heat transport devices
2. Review of applications of natural circulation systems
3. Governing differential equations for natural circulation systems
4. Steady-state and transient performance of single-phase natural circulation systems
5. Steady-state and transient analysis of two-phase natural circulation systems
6. Steady-state and transient analysis of supercritical natural circulation systems
7. Instabilities in natural circulation systems
8. Stability analysis of natural circulation systems
9. Modeling of instabilities in multichannel natural circulation boiling water reactors
10. Design of natural circulationbased systems
11. Coupled natural circulation systems
12. Scaling philosophy for natural circulation systems
13. Thermosyphon heat transport devices