Natural Convection in Superposed Fluid-Porous Layers
Bagchi, Aniruddha; Kulacki, Francis A.
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Description for Natural Convection in Superposed Fluid-Porous Layers
Paperback. Series: SpringerBriefs in Applied Sciences and Technology. Num Pages: 90 pages, 45 black & white illustrations, 10 black & white tables, biography. BIC Classification: RBK; TGMF; THK. Category: (P) Professional & Vocational. Dimension: 235 x 155 x 5. Weight in Grams: 156.
Natural Convection in Composite Fluid-Porous Domains provides a timely overview of the current state of understanding on the phenomenon of convection in composite fluid-porous layers. Natural convection in horizontal fluid-porous layers has received renewed attention because of engineering problems such as post-accident cooling of nuclear reactors, contaminant transport in groundwater, and convection in fibrous insulation systems. Because applications of the problem span many scientific domains, the book serves as a valuable resource for a wide audience.
Natural Convection in Composite Fluid-Porous Domains provides a timely overview of the current state of understanding on the phenomenon of convection in composite fluid-porous layers. Natural convection in horizontal fluid-porous layers has received renewed attention because of engineering problems such as post-accident cooling of nuclear reactors, contaminant transport in groundwater, and convection in fibrous insulation systems. Because applications of the problem span many scientific domains, the book serves as a valuable resource for a wide audience.
Product Details
Format
Paperback
Publication date
2013
Publisher
Springer-Verlag New York Inc. United States
Number of pages
90
Condition
New
Series
SpringerBriefs in Applied Sciences and Technology
Number of Pages
80
Place of Publication
New York, NY, United States
ISBN
9781461465751
SKU
V9781461465751
Shipping Time
Usually ships in 15 to 20 working days
Ref
99-15
About Bagchi, Aniruddha; Kulacki, Francis A.
Aniruddha Bagchi, University of Minnesota, bagch004@umn.edu Francis A. Kulacki, University of Minnesota, kulacki@me.umn.edu
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