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Advances in Multiphase Flow and Heat Transfer: Volume 3
Contributor(s): Mewes, Dieter (Author), Cheng, Lixin (Author)

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ISBN: 1608055000     ISBN-13: 9781608055005
Publisher: Bentham Science Publishers
OUR PRICE: $113.05  

Binding Type: Paperback
Published: February 2018
Qty:
Additional Information
BISAC Categories:
- Science | Chemistry - Industrial & Technical
Physical Information: 0.91" H x 8.5" W x 11" L (2.48 lbs) 350 pages
 
Descriptions, Reviews, Etc.
Publisher Description:
Multiphase flow and heat transfer have found a wide range of applications in several engineering and science fields such as mechanical engineering, chemical and petrochemical engineering, nuclear engineering, energy engineering, material engineering, ocean engineering, mineral engineering, electronics and micro-electronics engineering, information technology, space technology, micro- and nano-technologies, biomedical and life sciences. This book series presents state-of-the-art review and research topics in all aspects of multiphase flow and heat transfer, which are contributed by renowned scientists and researchers. The topics include multiphase transport phenomena including gas-liquid, liquid-solid, gas-solid and gas-liquid-solid flows, phase change processes, nuclear thermal hydraulics, fluidization, mass transfer, bubble and drop dynamics, particle flow interactions, cavitation phenomena, numerical methods, experimental techniques, multiphase flow equipment, combustion processes, environmental protection and pollution control, phase change materials and their applications, macro-scale and micro-scale transport phenomena, nano-fluidics, micro-gravity multiphase flow and heat transfer, energy engineering, renewable energy, electronic chips cooling, data center cooling, fuel cells, multiphase flow and heat transfer in biomedical engineering and science. The book series presents recent advances in both conventional research and interdisciplinary research. This book series should prove to be invaluable for scientists and researchers interested in multiphase flows.
 
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