Citation: | N.Anbuchezhian, K.Srinivasan, K.Chandrasekaran, R.Kandasamy. Thermophoresis and Brownian Motion Effects on Boundary-Layer Flow of a Nanofluid in the Presence of Thermal Stratification Due to Solar Energy[J]. Applied Mathematics and Mechanics, 2012, 33(6): 726-739. doi: 10.3879/j.issn.1000-0887.2012.06.007 |
[1] |
Otanicar T P, Phelan P E, Golden J S. Optical properties of liquids for direct absorption solar thermal energy systems[J]. Solar Energy, 2009, 83(7): 969-977.
|
[2] |
Richard K S, Lee S M. 800 hours of operational experience from a 2 kW solar dynamic system[C]Mohamed S El-Genk. Space Technology and Application International Forum,1999: 1426-1431.
|
[3] |
Odeh S D, Behnia M, Morrison G L. Performance evaluation of solar thermal electric generation systems[J].Energy Conversion and Management, 2003, 44(4): 2425-2443.
|
[4] |
Clausing A. Analysis of convective losses from cavity solar central receivers[J]. Solar Energy ,1981, 27(1): 295-300.
|
[5] |
Dehghan A A, Behnia M. Combined natural convection conduction and radiation heat transfer in a discretely heated open cavity[J]. Journal of Heat Transfer, 1996, 118(1): 56-65.
|
[6] |
Muftuoglu A, Bilgen E. Heat transfer in inclined rectangular receivers for concentrated solar radiation[J]. International Communications in Heat and Mass Transfer, 2008, 35(5): 551-556.
|
[7] |
Kennedy C E. Review of mid- to high-temperature solar selective absorber materials
|
[8] |
[R]. NREL/TP-520-31267, Golden CO. National Renewable Energy Laboratory, 2002.
|
[9] |
Trieb F, Nitsch J. Recommendations for the market introduction of solar thermal power stations[J]. Renewable Energy, 1998, 14(1):17-22.
|
[10] |
林培锋, 林建忠. 纳米粒子在弯管中的输运和沉降特性[J].应用数学和力学, 2009, 30(10): 895-906.(LIN Pei-feng, LIN Jian-zhong. Prediction of nanoparticle transport and deposition in bends[J]. Applied Mathematics and Mechanics(English edition), 2009, 30(8): 957-968.)
|
[11] |
LIN Jian-zhong, LIN Pei-feng, CHEN Hua-jun. Research on the transport and deposition of nanoparticles in a rotating curved pipe[J]. Physics of Fluids, 2009, 21(12):1-11.
|
[12] |
Masuda H, Ebata A, Teramae K, Hishinuma N. Alteration of thermal conductivity and viscosity of liquid by dispersing ultra-fine particles[J]. Netsu Bussei, 1993, 7(2):227-233.
|
[13] |
Buongiorno J, Hu W. Nanofluid coolants for advanced nuclear power plants[C]Proceedings of ICAPP,05. Paper N05705.Seoul, 2005.
|
[14] |
Buongiorno J. Convective transport in nanofluids[J]. ASME J Heat Transfer, 2006, 128(1): 240-250.
|
[15] |
Kuznetsov A V, Nield D A. Natural convective boundary-layer flow of a nanofluid past a vertical plate[J]. Int J Thermal Sci, 2010, 49(2): 243-247.
|
[16] |
Nield D A, Kuznetsov A V. The Cheng-Minkowycz problem for natural convective boundary layer flow in a porous medium saturated by a nanofluid[J]. Int J Heat Mass Transfer, 2009, 52(25/26): 5792-5795.
|
[17] |
Cheng P, Minkowycz W J. Free convection about a vertical flat plate embedded in a porous medium with application to heat transfer from a dike[J]. J Geophys Res, 1977, 82(14): 2040-2044.
|
[18] |
Oberlack M. Similarity in non-rotating and rotating turbulent pipe flows[J]. J Fluid Mech, 1999, 379: 1-22.
|
[19] |
Bluman G W, Kumei M.Symmetries and Differential Equations[M]. NY: Springer-Verlag, 1989.
|
[20] |
Pakdemirli M ,Yurusoy M. Similarity transformations for partial differential equations[J].SIAM Rev, 1998, 40(1): 96-101.
|
[21] |
Aminossadati S M, Ghasemi B. Natural convection cooling of a localized heat source at the bottom of a nanofluid-filled enclosure[J]. Eur J Mech B/Fluids, 2009, 28(5): 630-640.
|
[22] |
Akira Nakayama, Hitoshi Koyama. Similarity solutions for buoyancy induced flows over a non-isothermal curved surface in a thermally stratified porous medium[J]. Applied Scientific Research, 1989, 46(1):309-314.
|
[23] |
Brewster M Q. Thermal Radiative Transfer Properties[M]. NY: John Wiley & Sons, 1972.
|
[24] |
Gill S. A process for the step-by-step integration of differential equations in an automatic digital computing machine[J]. Proceedings of the Cambridge Philosophical Society, 1951, 47(1):96-108.
|
[25] |
Khan W A,Pop I. Boundary-layer flow of a nanofluid past a stretching sheet[J]. International Journal of Heat and Mass Transfer, 2010, 53(5):2477-2483.
|
[26] |
Wang C Y. Free convection on a vertical stretching surface[J]. ZAMM, 1989, 69(3):418-420.
|
[27] |
Gorla R S R, Sidawi I. Free convection on a vertical stretching surface with suction and blowing[J]. Appl Sci Res, 1994, 52(1): 247-257.
|