Molten Salt Reactors and Integrated Molten Salt Reactors: Integrated Power Conversion
Autor Bahman Zohurien Limba Engleză Paperback – 2 iul 2021
- Gain the latest applications and steps to implement modular reactors, including safety and technical considerations
- Learn an innovative approach to nuclear air combined cycles (NACC), bringing down the costs of producing electricity in nuclear power plants
- Practice techniques and computer modeling with additional appendices that include experimental validation methods and computer code results
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Specificații
ISBN-13: 9780323906388
ISBN-10: 0323906389
Pagini: 312
Ilustrații: 160 illustrations (100 in full color)
Dimensiuni: 152 x 229 mm
Greutate: 0.42 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0323906389
Pagini: 312
Ilustrații: 160 illustrations (100 in full color)
Dimensiuni: 152 x 229 mm
Greutate: 0.42 kg
Editura: ELSEVIER SCIENCE
Cuprins
1. Molten Salt Reactor History, From Past to Present
2. Integral Molten Salt Reactor
3. New Approach to Energy Conversion Technology
4. Advanced Power Conversion System Driven by Small Modular Reactors
5. Advanced Nuclear Open Air-Brayton Cycles for Highly Efficient Power Conversion
6. Heat Pipe Driven Heat Exchangers to Avoid Salt Freezing and Control Tritium C
7. Salt Cleanup and Waste Solidification for Fission and Fusion Reactors
Appendix
A. A Combined Cycle Power Conversion System for Small Modular LMFBR
B. Direct Reactor Auxiliary Cooling System (DRACS)
C. Heat Pipe General Knowledge
D. Variable Electricity and Steam Cooled Based Load Reactors
E. Variable Electricity and Steam Cooled Based Load Reactors
2. Integral Molten Salt Reactor
3. New Approach to Energy Conversion Technology
4. Advanced Power Conversion System Driven by Small Modular Reactors
5. Advanced Nuclear Open Air-Brayton Cycles for Highly Efficient Power Conversion
6. Heat Pipe Driven Heat Exchangers to Avoid Salt Freezing and Control Tritium C
7. Salt Cleanup and Waste Solidification for Fission and Fusion Reactors
Appendix
A. A Combined Cycle Power Conversion System for Small Modular LMFBR
B. Direct Reactor Auxiliary Cooling System (DRACS)
C. Heat Pipe General Knowledge
D. Variable Electricity and Steam Cooled Based Load Reactors
E. Variable Electricity and Steam Cooled Based Load Reactors
Notă biografică
Prof. Bahman Zohuri is an accomplished scientist, engineer, and academic with deep expertise in nuclear engineering, thermodynamics, and applied physics. He serves as an Adjunct Professor at Golden Gate University, where he teaches courses in artificial intelligence and machine learning. Prof. Zohuri holds degrees in Applied Mathematics, Physics, Mechanical Engineering, and Nuclear Engineering from institutions including the University of Illinois and the University of New Mexico. Early in his career, he contributed to advanced research projects at Westinghouse, and later in defense and semiconductor industries, before founding Galaxy Advanced Engineering, Inc. in 1991. Over his career, Prof. Zohuri has authored dozens of technical books and published over a hundred journal articles. He continues to pursue research in fields such as heat transfer, reactor design, computational methods, data mining, and AI-driven engineering solutions.