Phase Change Heat Transfer covers theory and experiments in heat transfer associated with boiling and condensation. It presents the basics of solid-liquid-vapor phase interactions and methods to measure surface wettability and interfacial tension between liquid and vapor.
Phase Change Heat Transfer covers theory and experiments in heat transfer associated with boiling and condensation. It presents the basics of solid-liquid-vapor phase interactions and methods to measure surface wettability and interfacial tension between liquid and vapor.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Vijay K. Dhir, Distinguished Professor of Mechanical and Aerospace Engineering, served as Dean of UCLA's Henry Samueli School of Engineering & Applied Science from 2003 to 2016. Born in India, Dhir received his Bachelor of Science degree from Punjab Engineering College in Chandigarh, India, and his Master of Technology degree from the Indian Institute of Technology in Kanpur, India. He received his Ph.D. from the University of Kentucky, USA. Dr. Dhir joined the faculty at UCLA in 1974 and served in several leadership roles before his appointment as Dean. He leads the Boiling Heat Transfer Lab, which has conducted pioneering work in fundamental and applied sciences involving boiling, an efficient process of heat removal. More than forty-seven PhD students and forty-eight MS students have graduated under Dr. Dhir's supervision. In 2006, he was elected to the National Academy of Engineering - among the highest honors awarded to engineers - for his work in boiling heat transfer and nuclear reactor thermal hydraulics and safety. Dr. Dhir received the 2004 Max Jakob Memorial Award of ASME and AIChE. He is a fellow of ASME and the American Nuclear Society, and he is a member of the European Academy of Arts and Sciences. In the past, he served on the National Academy of Science's Committee on Lessons Learned from the Fukushima Nuclear Accident for Improving Safety and Security of US. Nuclear Plants including Spent Fuel Pools. He is the author or co-author of over 350 papers published in archival journals and proceedings of conferences.
Inhaltsangabe
0. Front Matter. 1. Boiling and Condensation. 2. Thermodynamic Considerations. 3. Basics of Solid-Liquid-Vapor Phase Interactions. 4. Nucleation and Bubble Growth. 5. Nucleate Boiling Heat Transfer. 6. Hydrodynamic Analysis of Maximum and Minimum Heat Fluxes. 7. Film and Transition Boiling Heat Transfer. 8. Variables Affecting Nucleate Transition, and Film Boiling. 9. Film and Dropwise Condensation. 10. Nucleate and Film Boiling Heat Fluxes in Liquid Metals. 11. Two Phase Flow. 12. Flow Boiling Heat Transfer. 13. Numerical Simulations of Pool Boiling.
0. Front Matter. 1. Boiling and Condensation. 2. Thermodynamic Considerations. 3. Basics of Solid-Liquid-Vapor Phase Interactions. 4. Nucleation and Bubble Growth. 5. Nucleate Boiling Heat Transfer. 6. Hydrodynamic Analysis of Maximum and Minimum Heat Fluxes. 7. Film and Transition Boiling Heat Transfer. 8. Variables Affecting Nucleate Transition, and Film Boiling. 9. Film and Dropwise Condensation. 10. Nucleate and Film Boiling Heat Fluxes in Liquid Metals. 11. Two Phase Flow. 12. Flow Boiling Heat Transfer. 13. Numerical Simulations of Pool Boiling.
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