Microchannel Phase Change Transport Phenomena

Nonfiction, Science & Nature, Science, Physics, Thermodynamics, Mechanics, Technology
Cover of the book Microchannel Phase Change Transport Phenomena by Sujoy Kumar Saha, Elsevier Science
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: Sujoy Kumar Saha ISBN: 9780128043561
Publisher: Elsevier Science Publication: September 27, 2015
Imprint: Butterworth-Heinemann Language: English
Author: Sujoy Kumar Saha
ISBN: 9780128043561
Publisher: Elsevier Science
Publication: September 27, 2015
Imprint: Butterworth-Heinemann
Language: English

Microchannel Heat transfer is the cooling application of high power density microchips in the CPU system, micropower systems and many other large scale thermal systems requiring effective cooling capacity. This book offers the latest research and recommended models on the microsize cooling system which not only significantly reduces the weight load, but also enhances the capability to remove much greater amount of heat than any of large scale cooling systems.

A detailed reference in microchannel phase change (boiling and condensation) including recommended models and correlations for various requirements such as pressure loss, and heat transfer coefficient.

Researchers, engineers, designers and students will benefit from the collated, state-of-the-art of the research put together in this book and its systematic, addressing all the relevant issues and providing a good reference for solving problems of critical analysis.

  • Up-to-date information will help delineate further research direction in the microchannel heat transfer
  • The latest modeling information and recommendations will help in design method and purpose
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

Microchannel Heat transfer is the cooling application of high power density microchips in the CPU system, micropower systems and many other large scale thermal systems requiring effective cooling capacity. This book offers the latest research and recommended models on the microsize cooling system which not only significantly reduces the weight load, but also enhances the capability to remove much greater amount of heat than any of large scale cooling systems.

A detailed reference in microchannel phase change (boiling and condensation) including recommended models and correlations for various requirements such as pressure loss, and heat transfer coefficient.

Researchers, engineers, designers and students will benefit from the collated, state-of-the-art of the research put together in this book and its systematic, addressing all the relevant issues and providing a good reference for solving problems of critical analysis.

More books from Elsevier Science

Cover of the book Palladium Membrane Technology for Hydrogen Production, Carbon Capture and Other Applications by Sujoy Kumar Saha
Cover of the book Pipe Drafting and Design by Sujoy Kumar Saha
Cover of the book Advances in Applied Microbiology by Sujoy Kumar Saha
Cover of the book Nuclear Safeguards, Security and Nonproliferation by Sujoy Kumar Saha
Cover of the book Septins by Sujoy Kumar Saha
Cover of the book Marine Propellers and Propulsion by Sujoy Kumar Saha
Cover of the book G Protein Signaling Pathways in Health and Disease by Sujoy Kumar Saha
Cover of the book The Health of Populations by Sujoy Kumar Saha
Cover of the book Advances in Heat Transfer by Sujoy Kumar Saha
Cover of the book G Protein-Coupled Receptors: Emerging Paradigms in Activation, Signaling and Regulation Part A by Sujoy Kumar Saha
Cover of the book Genetic Diseases of the Kidney by Sujoy Kumar Saha
Cover of the book Physiology of Woody Plants by Sujoy Kumar Saha
Cover of the book Interfacing with C by Sujoy Kumar Saha
Cover of the book Sustainable Recovery and Reutilization of Cereal Processing By-Products by Sujoy Kumar Saha
Cover of the book Handbook of Self-Regulation by Sujoy Kumar Saha
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy