Microchannel Flow Dynamics and Heat Transfer of Near-Critical Fluid
Lin Chen
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Description for Microchannel Flow Dynamics and Heat Transfer of Near-Critical Fluid
Hardback. Series: Springer Theses. Num Pages: 178 pages, 5 black & white illustrations, 56 colour illustrations, 80 colour tables, biography. BIC Classification: PHDF; TDCB; TGMB; TH. Category: (P) Professional & Vocational. Dimension: 235 x 155 x 11. Weight in Grams: 438.
This book discusses basic thermodynamic behaviors and 'abnormal' properties from a thermo-physical perspective, and explores basic heat transfer and flow properties, the latest findings on their physical aspects and indications, chemical engineering properties, microscale phenomena, as well as transient behaviors in fast and critical environments. It also presents the most and challenging problems and the outlook for applications and innovations of supercritical fluids.
This book discusses basic thermodynamic behaviors and 'abnormal' properties from a thermo-physical perspective, and explores basic heat transfer and flow properties, the latest findings on their physical aspects and indications, chemical engineering properties, microscale phenomena, as well as transient behaviors in fast and critical environments. It also presents the most and challenging problems and the outlook for applications and innovations of supercritical fluids.
Product Details
Format
Hardback
Publication date
2016
Publisher
Springer Verlag, Singapore Singapore
Number of pages
178
Condition
New
Series
Springer Theses
Number of Pages
155
Place of Publication
Singapore, Singapore
ISBN
9789811027833
SKU
V9789811027833
Shipping Time
Usually ships in 15 to 20 working days
Ref
99-15
About Lin Chen
Dr. Lin Chen is a JSPS (Japan Society for the Promotion of Science) Research Fellow at the Institute of Fluid Science, Tohoku University, Japan. He received his B.E. (2010) and Ph.D (2015) in Energy and Resources Engineering from Peking University’s College of Engineering. His current research topics include energy resources, oceanic methane hydrate utilization, microscale compressible fluid flows, and multi-scale ... Read more
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