Thermophysical aspects of stagnation point magnetonanofluid flow yields by an inclined stretching cylindrical surface: a non-Newtonian fluid model
Tóm tắt
Từ khóa
Tài liệu tham khảo
Chol SUS (1995) Enhancing thermal conductivity of fluids with nanoparticles. ASME Publ Fed 231:99–106
Choi SUS, Zhang ZG, Yu W, Lockwood FE, Grulke EA (2001) Anomalous thermal conductivity enhancement in nanotube suspensions. Appl Phys Lett 79(14):2252–2254
Maiga SEB, Palm SJ, Nguyen CT, Roy G, Galanis N (2005) Heat transfer enhancement by using nanofluids in forced convection flows. Int J Heat Fluid Flow 26(4):530–546
Kang HU, Kim SH, Oh JM (2006) Estimation of thermal conductivity of nanofluid using experimental effective particle volume. Exp Heat Transf 19(3):181–191
Wang XQ, Mujumdar AS (2008) A review on nanofluids-part I: theoretical and numerical investigations. Braz J Chem Eng 25(4):613–630
Khan WA, Pop I (2010) Boundary-layer flow of a nanofluid past a stretching sheet. Int J Heat Mass Transf 53(11):2477–2483
Hosseini M, Sheikholeslami Z, Ganji DD (2013) Non-Newtonian fluid flow in an axisymmetric channel with porous wall. Propuls Power Res 2(4):254–262
Hatami M, Ganji DD (2014) Natural convection of sodium alginate (SA) non-Newtonian nanofluid flow between two vertical flat plates by analytical and numerical methods. Case Stud Therm Eng 2:14–22
Ashorynejad HR, Javaherdeh K, Sheikholeslami M, Ganji DD (2014) Investigation of the heat transfer of a non-Newtonian fluid flow in an axisymmetric channel with porous wall using Parameterized Perturbation Method (PPM). J Frankl Inst 351(2):701–712
Hatami M, Hatami J, Ganji DD (2014) Computer simulation of MHD blood conveying gold nanoparticles as a third grade non-Newtonian nanofluid in a hollow porous vessel. Comput Methods Progr Biomed 113(2):632–641
Bahiraei M, Hangi M (2015) Flow and heat transfer characteristics of magnetic nanofluids: a review. J Magn Magn Mater 374:125–138
Rahimi-Gorji M, Pourmehran O, Gorji-Bandpy M, Ganji DD (2015) An analytical investigation on unsteady motion of vertically falling spherical particles in non-Newtonian fluid by collocation method. Ain Shams Eng J 6(2):531–540
Hayat T, Muhammad T, Alsaedi A, Alhuthali MS (2015) Magnetohydrodynamic three-dimensional flow of viscoelastic nanofluid in the presence of nonlinear thermal radiation. J Magn Magn Mater 385:222–229
Bahiraei M (2015) Effect of particle migration on flow and heat transfer characteristics of magnetic nanoparticle suspensions. J Mol Liq 209:531–538
Dogonchi AS, Divsalar K, Ganji DD (2016) Flow and heat transfer of MHD nanofluid between parallel plates in the presence of thermal radiation. Comput Methods Appl Mech Eng 310:58–76
Hussanan A, Khan I, Hashim H, Mohamed MKA, Ishak N, Sarif NM, Salleh MZ (2016) Unsteady Mhd flow of some nanofluids past an accelerated vertical plate embedded in a porous medium. J Teknol 78(2):121–126
Sheikholeslami M, Rokni HB (2017) Numerical modeling of nanofluid natural convection in a semi annulus in existence of Lorentz force. Comput Methods Appl Mech Eng 317:419–430
Bahiraei M, Naghibzadeh SM, Jamshidmofid M (2017) Efficacy of an eco-friendly nanofluid in a miniature heat exchanger regarding to arrangement of silver nanoparticles. Energy Convers Manag 144:224–234
Bilal S, Rehman KU, Malik MY, Hussain A, Awais M (2017) Effect logs of double diffusion on MHD Prandtl nano fluid adjacent to stretching surface by way of numerical approach. Results Phys 7:470–479
Bahiraei M, Khosravi R, Heshmatian S (2017) Assessment and optimization of hydrothermal characteristics for a non-Newtonian nanofluid flow within miniaturized concentric-tube heat exchanger considering designer’s viewpoint. Appl Therm Eng 123:266–276
Ibrahim W, Makinde OD (2013) The effect of double stratification on boundary-layer flow and heat transfer of nanofluid over a vertical plate. Comput Fluids 86:433–441
Ishak A, Nazar R, Pop I (2008) Mixed convection boundary layer flow adjacent to a vertical surface embedded in a stable stratified medium. Int J Heat Mass Transf 51(13):3693–3695
Srinivasacharya D, Upendar M (2013) Effect of double stratification on MHD free convection in a micropolar fluid. J Egypt Math Soc 21(3):370–378
Hayat T, Hussain T, Shehzad SA, Alsaedi A (2014) Thermal and concentration stratifications effects in radiative flow of Jeffrey fluid over a stretching sheet. PLoS One 9(10):e107858
Mishra SR, Pattnaik PK, Dash GC (2015) Effect of heat source and double stratification on MHD free convection in a micropolar fluid. Alex Eng J 54(3):681–689
Hussain T, Hussain S, Hayat T (2016) Impact of double stratification and magnetic field in mixed convective radiative flow of Maxwell nanofluid. J Mol Liq 220:870–878
Babu MJ, Sandeep N (2017) UCM flow across a melting surface in the presence of double stratification and cross-diffusion effects. J Mol Liq 232:27–35
Malik MY, Bilal S, Bibi M (2017) Numerical analysis for MHD thermal and solutal stratified stagnation point flow of Powell–Eyring fluid induced by cylindrical surface with dual convection and heat generation effects. Results Phys 7:482–492
Yoon HK, Ghajar AJ (1987) A note on the Powell–Eyring fluid model. Int Commun Heat Mass Transf 14(4):381–390
Patel M, Timol MG (2009) Numerical treatment of Powell–Eyring fluid flow using method of satisfaction of asymptotic boundary conditions (MSABC). Appl Numer Math 59(10):2584–2592
Javed T, Ali N, Abbas Z, Sajid M (2013) Flow of an Eyring–Powell non-Newtonian fluid over a stretching sheet. Chem Eng Commun 200(3):327–336
Roşca AV, Pop I (2014) Flow and heat transfer of Powell-Eyring fluid over a shrinking surface in a parallel free stream. Int J Heat Mass Transf 71:321–327
Malik MY, Hussain A, Nadeem S (2013) Boundary layer flow of an Eyring–Powell model fluid due to a stretching cylinder with variable viscosity. Sci Iran 20(2):313–321
Hayat T, Gull N, Farooq M, Ahmad B (2015) Thermal radiation effect in MHD flow of Powell—Eyring nanofluid induced by a stretching cylinder. J Aerosp Eng 29(1):04015011
Rehman KU, Malik MY, Salahuddin T, Naseer M (2016) Dual stratified mixed convection flow of Eyring–Powell fluid over an inclined stretching cylinder with heat generation/absorption effect. AIP Adv 6(7):075112
Rehman A, Achakzia S, Nadeem S, Iqbal S (2016) Stagnation point flow of Eyring Powell fluid in a vertical cylinder with heat transfer. J Power Technol 96(1):57
Rahimi J, Ganji DD, Khaki M, Hosseinzadeh K (2016) Solution of the boundary layer flow of an Eyring-Powell non-Newtonian fluid over a linear stretching sheet by collocation method. Alex Eng J. doi: 10.1016/j.aej.2016.11.006
Fathizadeh M, Madani M, Khan Y, Faraz N, Yıldırım A, Tutkun S (2013) An effective modification of the homotopy perturbation method for mhd viscous flow over a stretching sheet. J King Saud Univ Sci 25(2):107–113