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Erschienen in: Neural Computing and Applications 6/2018

18.08.2016 | Original Article

Heat and mass transfer in a micropolar fluid with Newtonian heating: an exact analysis

verfasst von: Abid Hussanan, Mohd Zuki Salleh, Ilyas Khan, Razman Mat Tahar

Erschienen in: Neural Computing and Applications | Ausgabe 6/2018

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Abstract

Heat and mass transfer phenomenon in a micropolar fluid is analyzed. The fluid occupies the space over an infinite oscillating vertical plate with Newtonian heating. The plate executes cosine type of oscillations. Exact solutions are obtained using the Laplace transform technique. Expressions for velocity, microrotation, temperature and concentration are obtained. Graphs for velocity and microrotation are plotted for various embedded parameters and discussed.

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Literatur
1.
2.
Zurück zum Zitat Hsu PT, Chen CK, Wang CC (2000) Mixed convection of micropolar fluids along a vertical wavy surface. Acta Mech 144:231–247CrossRefMATH Hsu PT, Chen CK, Wang CC (2000) Mixed convection of micropolar fluids along a vertical wavy surface. Acta Mech 144:231–247CrossRefMATH
3.
Zurück zum Zitat Hassanien IA (1999) Flow and heat transfer in the boundary layer of a micropolar fluid on a continuous moving. Int J Numer Meth Heat Fluid Flow 9:643–659CrossRefMATH Hassanien IA (1999) Flow and heat transfer in the boundary layer of a micropolar fluid on a continuous moving. Int J Numer Meth Heat Fluid Flow 9:643–659CrossRefMATH
4.
Zurück zum Zitat Kim YJ (1999) Thermal boundary layer flow of a micropolar fluid past a wedge with constant wall temperature. Acta Mech 138:113–121CrossRefMATH Kim YJ (1999) Thermal boundary layer flow of a micropolar fluid past a wedge with constant wall temperature. Acta Mech 138:113–121CrossRefMATH
5.
Zurück zum Zitat Damseh RA, Azab TAA, Shannak BA, Husein MA (2007) Unsteady natural convection heat transfer of micropolar fluid over a vertical surface with constant heat flux. Turk J Eng Environ Sci 31:225–233 Damseh RA, Azab TAA, Shannak BA, Husein MA (2007) Unsteady natural convection heat transfer of micropolar fluid over a vertical surface with constant heat flux. Turk J Eng Environ Sci 31:225–233
6.
Zurück zum Zitat Rahman MM, Sultana Y (2008) Radiative heat transfer flow of micropolar fluid with variable heat flux in a porous medium. Nonlinear Anal Model Control 13:71–87MATH Rahman MM, Sultana Y (2008) Radiative heat transfer flow of micropolar fluid with variable heat flux in a porous medium. Nonlinear Anal Model Control 13:71–87MATH
7.
Zurück zum Zitat Reddy MG (2012) Magnetohydrodynamics and radiation effects on unsteady convection flow of micropolar fluid past a vertical porous plate with variable wall heat flux. ISRN Thermodyn 2012:1–8 Reddy MG (2012) Magnetohydrodynamics and radiation effects on unsteady convection flow of micropolar fluid past a vertical porous plate with variable wall heat flux. ISRN Thermodyn 2012:1–8
8.
Zurück zum Zitat Mahmoud MAA, Waheed SE (2012) MHD flow and heat transfer of a micropolar fluid over a stretching surface with heat generation (absorption) and slip velocity. J Egypt Math Soc 20:20–27MathSciNetCrossRefMATH Mahmoud MAA, Waheed SE (2012) MHD flow and heat transfer of a micropolar fluid over a stretching surface with heat generation (absorption) and slip velocity. J Egypt Math Soc 20:20–27MathSciNetCrossRefMATH
9.
Zurück zum Zitat Si X, Zheng L, Lin P, Zhang X, Zhang Y (2013) Flow and heat transfer of a micropolar fluid in a porous channel with expanding or contracting walls. Int J Heat Mass Transf 67:885–895CrossRef Si X, Zheng L, Lin P, Zhang X, Zhang Y (2013) Flow and heat transfer of a micropolar fluid in a porous channel with expanding or contracting walls. Int J Heat Mass Transf 67:885–895CrossRef
10.
Zurück zum Zitat Sheikholeslami M, Ashorynejad HR, Ganji DD, Rashidi MM (2014) Heat and mass transfer of a micropolar fluid in a porous channel. Commun Numer Anal 2014:1–20MathSciNetCrossRef Sheikholeslami M, Ashorynejad HR, Ganji DD, Rashidi MM (2014) Heat and mass transfer of a micropolar fluid in a porous channel. Commun Numer Anal 2014:1–20MathSciNetCrossRef
11.
Zurück zum Zitat Hakiem MAE (2014) Heat transfer from moving surfaces in a micropolar fluid with internal heat generation. J Eng Appl Sci 1:30–36 Hakiem MAE (2014) Heat transfer from moving surfaces in a micropolar fluid with internal heat generation. J Eng Appl Sci 1:30–36
12.
Zurück zum Zitat Sherief HH, Faltas MS, Ashmawy EA (2011) Exact solution for the unsteady flow of a semi-infinite micropolar fluid. Acta Mech Sin 27:354–359MathSciNetCrossRefMATH Sherief HH, Faltas MS, Ashmawy EA (2011) Exact solution for the unsteady flow of a semi-infinite micropolar fluid. Acta Mech Sin 27:354–359MathSciNetCrossRefMATH
13.
Zurück zum Zitat Qasim M, Hayat T (2010) Effects of thermal radiation on unsteady magnetohydrodynamic flow of a micropolar fluid with heat and mass transfer. Zeitschrift für Naturforschung A 64:950–960 Qasim M, Hayat T (2010) Effects of thermal radiation on unsteady magnetohydrodynamic flow of a micropolar fluid with heat and mass transfer. Zeitschrift für Naturforschung A 64:950–960
14.
Zurück zum Zitat Qasim M, Khan I, Sharidan S (2013) Heat transfer in a micropolar fluid over a stretching sheet with Newtonian heating. PLoS One 8:e59393CrossRef Qasim M, Khan I, Sharidan S (2013) Heat transfer in a micropolar fluid over a stretching sheet with Newtonian heating. PLoS One 8:e59393CrossRef
15.
Zurück zum Zitat Bakier AY (2011) Natural convection heat and mass transfer in a micropolar fluid-saturated non-darcy porous regime with radiation and thermophoresis effects. Therm Sci 15:317–326CrossRef Bakier AY (2011) Natural convection heat and mass transfer in a micropolar fluid-saturated non-darcy porous regime with radiation and thermophoresis effects. Therm Sci 15:317–326CrossRef
16.
Zurück zum Zitat Aurangzaib, Kasim ARM, Mohammad NF, Sharidan S (2013) Unsteady MHD mixed convection flow with heat and mass transfer over a vertical plate in a micropolar fluid-saturated porous medium. J Appl Sci Eng 16:141–150 Aurangzaib, Kasim ARM, Mohammad NF, Sharidan S (2013) Unsteady MHD mixed convection flow with heat and mass transfer over a vertical plate in a micropolar fluid-saturated porous medium. J Appl Sci Eng 16:141–150
17.
Zurück zum Zitat Khan I, Qasim M, Sharidan S (2015) Flow of an Erying–Powell fluid over a stretching sheet in presence of chemical reaction. Therm Sci. doi:10.2298/TSCI131129111K Khan I, Qasim M, Sharidan S (2015) Flow of an Erying–Powell fluid over a stretching sheet in presence of chemical reaction. Therm Sci. doi:10.​2298/​TSCI131129111K
18.
Zurück zum Zitat Fetecau C, Vieru D, Fetecau C, Pop I (2015) Slip effects on the unsteady radiative MHD free convection flow over a moving plate with mass diffusion and heat source. Eur Phys J Plus 130:1–13CrossRef Fetecau C, Vieru D, Fetecau C, Pop I (2015) Slip effects on the unsteady radiative MHD free convection flow over a moving plate with mass diffusion and heat source. Eur Phys J Plus 130:1–13CrossRef
19.
Zurück zum Zitat Srinivasacharya D, Upendar M (2013) Effect of double stratification on MHD free convection in a micropolar fluid. J Egypt Math Soc 21:370–378MathSciNetCrossRefMATH Srinivasacharya D, Upendar M (2013) Effect of double stratification on MHD free convection in a micropolar fluid. J Egypt Math Soc 21:370–378MathSciNetCrossRefMATH
20.
Zurück zum Zitat Srinivasacharya D, Upendar M (2014) Thermal radiation and chemical reaction effects on magnetohydrodynamic free convection heat and mass transfer in a micropolar fluid. Turk J Eng Environ Sci. doi:10.3906/muh-1209-3 MATH Srinivasacharya D, Upendar M (2014) Thermal radiation and chemical reaction effects on magnetohydrodynamic free convection heat and mass transfer in a micropolar fluid. Turk J Eng Environ Sci. doi:10.​3906/​muh-1209-3 MATH
21.
Zurück zum Zitat Fakour M, Vahabzadeh A, Ganjib DD, Hatami M (2015) Analytical study of micropolar fluid flow and heat transfer in a channel with permeable walls. J Mol Liq 204:198–204CrossRef Fakour M, Vahabzadeh A, Ganjib DD, Hatami M (2015) Analytical study of micropolar fluid flow and heat transfer in a channel with permeable walls. J Mol Liq 204:198–204CrossRef
22.
Zurück zum Zitat Merkin JH (1994) Natural convection boundary layer flow on a vertical surface with Newtonian heating. Int J Heat Fluid Flow 15:392–398CrossRef Merkin JH (1994) Natural convection boundary layer flow on a vertical surface with Newtonian heating. Int J Heat Fluid Flow 15:392–398CrossRef
23.
Zurück zum Zitat Mohamed KAM, Salleh MZ, Nazar R, Ishak A (2012) Stagnation point flow over a stretching sheet with Newtonian heating. Sains Malays 41:1467–1473 Mohamed KAM, Salleh MZ, Nazar R, Ishak A (2012) Stagnation point flow over a stretching sheet with Newtonian heating. Sains Malays 41:1467–1473
24.
Zurück zum Zitat Merkin JH, Nazar R, Pop I (2012) The development of forced convection heat transfer near a forward stagnation point with Newtonian heating. J Eng Math 76:53–60MathSciNetCrossRefMATH Merkin JH, Nazar R, Pop I (2012) The development of forced convection heat transfer near a forward stagnation point with Newtonian heating. J Eng Math 76:53–60MathSciNetCrossRefMATH
25.
Zurück zum Zitat Salleh MZ, Nazar R, Pop I (2012) Numerical solutions of free convection boundary layer flow on a solid sphere with Newtonian heating in a micropolar fluid. Meccanica 47:1261–1269MathSciNetCrossRefMATH Salleh MZ, Nazar R, Pop I (2012) Numerical solutions of free convection boundary layer flow on a solid sphere with Newtonian heating in a micropolar fluid. Meccanica 47:1261–1269MathSciNetCrossRefMATH
26.
Zurück zum Zitat Alkasasbeh HT, Salleh MZ (2014) Numerical solutions of radiation effect on MHD free convection boundary layer flow about a solid sphere with Newtonian heating. Appl Math Sci 8:6989–7000 Alkasasbeh HT, Salleh MZ (2014) Numerical solutions of radiation effect on MHD free convection boundary layer flow about a solid sphere with Newtonian heating. Appl Math Sci 8:6989–7000
27.
Zurück zum Zitat Mebine P, Adigio EM (2009) Unsteady free convection flow with thermal radiation past a vertical porous plate with Newtonian heating. Turk J Phys 33:109–119 Mebine P, Adigio EM (2009) Unsteady free convection flow with thermal radiation past a vertical porous plate with Newtonian heating. Turk J Phys 33:109–119
28.
Zurück zum Zitat Narahari M, Nayan MY (2011) Free convection flow past an impulsively started infinite vertical plate with Newtonian heating in the presence of thermal radiation and mass diffusion. Turk J Eng Environ Sci 35:187–198 Narahari M, Nayan MY (2011) Free convection flow past an impulsively started infinite vertical plate with Newtonian heating in the presence of thermal radiation and mass diffusion. Turk J Eng Environ Sci 35:187–198
29.
Zurück zum Zitat Hussanan A, Khan I, Sharidan S (2013) An exact analysis of heat and mass transfer past a vertical plate with Newtonian heating. J Appl Math 2013:1–9MathSciNetCrossRefMATH Hussanan A, Khan I, Sharidan S (2013) An exact analysis of heat and mass transfer past a vertical plate with Newtonian heating. J Appl Math 2013:1–9MathSciNetCrossRefMATH
30.
Zurück zum Zitat Hussanan A, Zakaria MN (2013) Samiulhaq, Khan, I., Sharidan, S., Radiation effect on unsteady magnetohydrodynamic free convection flow in a porous medium with Newtonian heating. Int J Appl Math Stat 42:474–480 Hussanan A, Zakaria MN (2013) Samiulhaq, Khan, I., Sharidan, S., Radiation effect on unsteady magnetohydrodynamic free convection flow in a porous medium with Newtonian heating. Int J Appl Math Stat 42:474–480
31.
Zurück zum Zitat Hussanan A, Khan I, Salleh MZ, Sharidan S (2015) Slip effects on unsteady free convective heat and mass transfer flow with Newtonian heating. Therm Sci. doi:10.2298/TSCI131119142A Hussanan A, Khan I, Salleh MZ, Sharidan S (2015) Slip effects on unsteady free convective heat and mass transfer flow with Newtonian heating. Therm Sci. doi:10.​2298/​TSCI131119142A
32.
Zurück zum Zitat Vieru D, Fetecau C, Fetecau C, Nigar N (2014) Magnetohydrodynamic natural convection flow with Newtonian heating and mass diffusion over an infinite plate that applies shear stress to a viscous fluid. Zeitschrift für Naturforschung A 69:714–724CrossRef Vieru D, Fetecau C, Fetecau C, Nigar N (2014) Magnetohydrodynamic natural convection flow with Newtonian heating and mass diffusion over an infinite plate that applies shear stress to a viscous fluid. Zeitschrift für Naturforschung A 69:714–724CrossRef
Metadaten
Titel
Heat and mass transfer in a micropolar fluid with Newtonian heating: an exact analysis
verfasst von
Abid Hussanan
Mohd Zuki Salleh
Ilyas Khan
Razman Mat Tahar
Publikationsdatum
18.08.2016
Verlag
Springer London
Erschienen in
Neural Computing and Applications / Ausgabe 6/2018
Print ISSN: 0941-0643
Elektronische ISSN: 1433-3058
DOI
https://doi.org/10.1007/s00521-016-2516-0

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