Mixed Convection from Confined Cylinders to Non-Newtonian Nanofluids

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9783639662511: Mixed Convection from Confined Cylinders to Non-Newtonian Nanofluids
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The mixed convection flow and heat transfer characteristics of non-Newtonian (shear-thinning) water-based nanofluids past confined circular cylinders are numerically investigated. The governing continuity, momentum, and energy equations are simultaneously solved using ANSYS Fluent in two dimensional steady vertically upward flow regime. The influence of the volume fraction of nanoparticles (0.005 ≤ ϕ ≤ 0.045), Reynolds number (1 ≤ Re ≤ 40), and blockage ratio (0.1 ≤ D/H ≤ 0.5) on local and global characteristics are delineated. The effect of aiding and opposing buoyancy is incorporated by varying the Richardson number in the range -2 ≤ Ri ≤ 2. The local and average Nusselt numbers variation with respect to Richardson numbers, Reynolds numbers and volume fraction has also been studied. The local Nusselt number plots show mixed trends and asymmetric in the present range of Reynolds number and blockage ratio. The average Nusselt number increases with increase in Reynolds number, volume fraction and with the decreasing blockage ratio.

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Dr. Nanda Kishore is Associate Professor in Department of Chemical Engineering, Indian Institute of Technology Guwahati (IITG). He obtained doctoral degree from IIT Kanpur. Prior to joining IITG, Dr. Kishore was "Brunel Research Fellow" at University of Southampton, UK. This fellowship is sponsored by "Royal Society for the Exhibition of 1851".

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Book Description SPS Nov 2014, 2014. Taschenbuch. Condition: Neu. Neuware - The mixed convection flow and heat transfer characteristics of non-Newtonian (shear-thinning) water-based nanofluids past confined circular cylinders are numerically investigated. The governing continuity, momentum, and energy equations are simultaneously solved using ANSYS Fluent in two dimensional steady vertically upward flow regime. The influence of the volume fraction of nanoparticles (0.005 0.045), Reynolds number (1 Re 40), and blockage ratio (0.1 D/H 0.5) on local and global characteristics are delineated. The effect of aiding and opposing buoyancy is incorporated by varying the Richardson number in the range -2 Ri 2. The local and average Nusselt numbers variation with respect to Richardson numbers, Reynolds numbers and volume fraction has also been studied. The local Nusselt number plots show mixed trends and asymmetric in the present range of Reynolds number and blockage ratio. The average Nusselt number increases with increase in Reynolds number, volume fraction and with the decreasing blockage ratio. 100 pp. Englisch. Seller Inventory # 9783639662511

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Book Description SPS Nov 2014, 2014. Taschenbuch. Condition: Neu. Neuware - The mixed convection flow and heat transfer characteristics of non-Newtonian (shear-thinning) water-based nanofluids past confined circular cylinders are numerically investigated. The governing continuity, momentum, and energy equations are simultaneously solved using ANSYS Fluent in two dimensional steady vertically upward flow regime. The influence of the volume fraction of nanoparticles (0.005 0.045), Reynolds number (1 Re 40), and blockage ratio (0.1 D/H 0.5) on local and global characteristics are delineated. The effect of aiding and opposing buoyancy is incorporated by varying the Richardson number in the range -2 Ri 2. The local and average Nusselt numbers variation with respect to Richardson numbers, Reynolds numbers and volume fraction has also been studied. The local Nusselt number plots show mixed trends and asymmetric in the present range of Reynolds number and blockage ratio. The average Nusselt number increases with increase in Reynolds number, volume fraction and with the decreasing blockage ratio. 100 pp. Englisch. Seller Inventory # 9783639662511

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Book Description SPS Nov 2014, 2014. Taschenbuch. Condition: Neu. This item is printed on demand - Print on Demand Neuware - The mixed convection flow and heat transfer characteristics of non-Newtonian (shear-thinning) water-based nanofluids past confined circular cylinders are numerically investigated. The governing continuity, momentum, and energy equations are simultaneously solved using ANSYS Fluent in two dimensional steady vertically upward flow regime. The influence of the volume fraction of nanoparticles (0.005 0.045), Reynolds number (1 Re 40), and blockage ratio (0.1 D/H 0.5) on local and global characteristics are delineated. The effect of aiding and opposing buoyancy is incorporated by varying the Richardson number in the range -2 Ri 2. The local and average Nusselt numbers variation with respect to Richardson numbers, Reynolds numbers and volume fraction has also been studied. The local Nusselt number plots show mixed trends and asymmetric in the present range of Reynolds number and blockage ratio. The average Nusselt number increases with increase in Reynolds number, volume fraction and with the decreasing blockage ratio. 100 pp. Englisch. Seller Inventory # 9783639662511

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Book Description Scholars' Press, United States, 2014. Paperback. Condition: New. Language: English. Brand new Book. The mixed convection flow and heat transfer characteristics of non-Newtonian (shear-thinning) water-based nanofluids past confined circular cylinders are numerically investigated. The governing continuity, momentum, and energy equations are simultaneously solved using ANSYS Fluent in two dimensional steady vertically upward flow regime. The influence of the volume fraction of nanoparticles (0.005 0.045), Reynolds number (1 Re 40), and blockage ratio (0.1 D/H 0.5) on local and global characteristics are delineated. The effect of aiding and opposing buoyancy is incorporated by varying the Richardson number in the range -2 Ri 2. The local and average Nusselt numbers variation with respect to Richardson numbers, Reynolds numbers and volume fraction has also been studied. The local Nusselt number plots show mixed trends and asymmetric in the present range of Reynolds number and blockage ratio. The average Nusselt number increases with increase in Reynolds number, volume fraction and with the decreasing blockage ratio. Seller Inventory # AAV9783639662511

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Book Description Scholars' Press. Paperback. Condition: New. 100 pages. Dimensions: 8.7in. x 5.9in. x 0.2in.The mixed convection flow and heat transfer characteristics of non-Newtonian (shear-thinning) water-based nanofluids past confined circular cylinders are numerically investigated. The governing continuity, momentum, and energy equations are simultaneously solved using ANSYS Fluent in two dimensional steady vertically upward flow regime. The influence of the volume fraction of nanoparticles (0. 005 0. 045), Reynolds number (1 Re 40), and blockage ratio (0. 1 DH 0. 5) on local and global characteristics are delineated. The effect of aiding and opposing buoyancy is incorporated by varying the Richardson number in the range -2 Ri 2. The local and average Nusselt numbers variation with respect to Richardson numbers, Reynolds numbers and volume fraction has also been studied. The local Nusselt number plots show mixed trends and asymmetric in the present range of Reynolds number and blockage ratio. The average Nusselt number increases with increase in Reynolds number, volume fraction and with the decreasing blockage ratio. This item ships from multiple locations. Your book may arrive from Roseburg,OR, La Vergne,TN. Paperback. Seller Inventory # 9783639662511

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