Sains Malaysiana 43(7)(2014): 1109–1118
Partial Slip Effect on Heat and Mass Transfer of MHD Peristaltic
Transport
in a Porous Medium
(Kesan Gelincir Separa ke atas Pemindahan Haba dan Jisim bagi Aliran Peristalsis
(MHD) di dalam Medium Berliang)
OBAID ULLAH
MEHMOOD1,3,
NORZIEHA MUSTAPHA2*,
SHARIDAN SHAFIE1
& T.
HAYAT3,4
1Department of
Mathematical Sciences, Faculty of Science, Universiti Teknologi Malaysia
81310 Johor Bahru, Johor, Malaysia
2UTM Centre for
Industrial & Applied Mathematics (UTM-CIAM), Universiti Teknologi
Malaysia, 81310 Johor Bahru, Johor, Malaysia
3Department of Mathematics,
Quaid-I-Azam University 45320, Islamabad
44000
Pakistan
4Department of Mathematics,
College of Science, King Saudi University, P.O. Box 2455
Riyadh 11451, Saudi
Arabia
Received: 30 September
2011/Accepted: 4 October 2013
ABSTRACT
This research looks at the effects
of partial slip on heat and mass transfer of peristaltic transport. The magnetohydrodynamic (MHD)
flow of viscous fluid in a porous asymmetric channel has been considered. The
exact solutions for the stream function, longitudinal pressure gradient,
longitudinal velocity, shear stress, temperature and concentration fields are
derived by adopting long wavelength and small Reynolds number approximations.
The results showed that peristaltic pumping and trapping are reduced with
increasing velocity slip parameter. Furthermore, temperature increases with
increasing thermal slip parameter. Moreover, the concentration profile
decreases with increasing porosity parameter, Schmidt number and concentration
slip parameter. Comparisons with published results are found to be in good
agreement.
Keywords: Heat and mass transfer; MHD peristaltic flow; partial
slip; porous medium; pumping; trapping
ABSTRAK
Kajian ini membincangkan kesan gelincir separa ke atas pemindahan haba dan jisim bagi aliran peristalsis. Aliran yang mempunyai hidrodinamik magnet (MHD) di dalam saluran tak simetri berliang dipertimbangkan. Penyelesian tepat untuk rangkap arus, kecerunan tekanan membujur, halaju membujur, tegasan ricih, medan suhu dan medan kepekatan diperoleh dengan menggunakan penghampiran panjang gelombang yang panjang dan nombor Reynold yang kecil. Keputusan menunjukkan peristalsis mengepam dan memerangkap bendalir berkurangan apabila meningkatnya parameter halaju gelinciran. Seterusnya, suhu meningkat dengan peningkatan parameter haba gelinciran. Tambahan pula, profil kepekatan menurun dengan meningkatnya parameter keliangan, nombor Schmidt dan parameter kepekatan gelinciran. Perbandingan dengan keputusan yang telah diterbitkan menunjukkan persetujuan yang baik.
Kata
kunci: Aliran
peristalsis MHD; gelincir separa; medium berliang;
memerangkap; mengepam; pemindahan haba dan jisim
REFERENCES
Akbar, N.S.
& Nadeem, S. 2011. Simulation
of heat transfer on the peristaltic flow of a Jeffrey-six constant fluid in a
diverging tube. International Communications in Heat and Mass
Transfer 38: 154-150.
Elmaboud, Y.Abd. & Mekheimer, Kh.S. 2011. Non-linear peristaltic transport of a second-order fluid through a
porous medium. Applied Mathematical Modelling 35:
2695-2710.
Hayat, T.
& Noreen, S. 2010. Peristaltic transport of fourth grade fluid with heat
transfer and induced magnetic field. Comptes Rendus Mecanique338:
518-528.
Hayat, T.
& Mehmood, O.U. 2011. Slip effects on MHD flow of
third order fluid in a planar channel. Communications in Nonlinear Science
and Numerical Simulation 16: 1363-1377.
Hayat, T., Asghar, Z., Asghar, S. & Mesloub, S. 2010a. Influence of inclined magnetic field on
peristaltic transport of fourth grade fluid in an inclined asymmetric channel. Journal
of the Taiwan Institute of Chemical Engineers 41: 553-563.
Hayat, T., Hina, S. & Ali, N. 2010b. Simultaneous effects of slip and heat transfer on the peristaltic flow. Communications
in Nonlinear Science and Numerical Simulation 15: 1526-1537.
Latham, T.W.
1966. Fluid motion in peristaltic pumps.
MS Thesis, MIT (unpublished).
Mahmoud,
S.R. 2011. Effect of rotation and magnetic field through
porous medium on peristaltic transport of a Jeffrey fluid in tube. Mathematical
Problems in Engineering 2011: 971456.
Mahmoud,
S.R., Afifi, N.A. & Al-Isede,
H.M. 2011. Effect of porous media and magnetic field on
peristaltic transport of a Jeffrey fluid in an asymmetric channel. International
Journal of Mathematical Analysis 5(21): 1025-1034.
Mehmood, O.U.,
Mustapha, N., Shafie, S. & Qasim,
M. 2013. Dissipative heat transfer in peristaltic flow
of Sisko fluid through a cylindrical tube with
nonlinear slip. Heat Transfer Research (in press).
Mekheimar, Kh.S. & Elmaboud, Y.Abd. 2008. The
influence of heat transfer and magnetic field on the peristaltic transport of
Newtonian fluid in vertical annulus-Applications of an endoscope. Physics
Letter A 372: 1657-1665.
Mishra, M.
& Rao, A.R. 2003. Peristaltic flow of Newtonian fluid in
an asymmetric channel. Zeitschrift für angewandte Mathematik und Physik54:
532-550.
Muthuraj, R. & Srinivas, S. 2010a. A note on heat transfer to
MHD oscillatory flow in an asymmetric wavy channel. International
Communications in Heat and Mass Transfer 37: 1255-1260.
Muthuraj, R. & Srinivas, S. 2010b. Mixed
convective heat and mass transfer in a vertical wavy channel with traveling
thermal waves and porous medium. Computers & Mathematics with
Applications 59: 3516-3528.
Nadeem, S. & Akram, S. 2010. Heat transfer in a peristaltic flow of MHD
fluid with partial slip. Communications in Nonlinear Science and Numerical
Simulation 15: 312-321.
Sezer, S.A. & Yildirim, A. 2010. A numerical treatment
for the solution of the hydromagnetic peristaltic
flow of a bio-fluid with variable viscosity in a circular cylindrical tube. International Journal for Numerical Methods in Biomedical Engineering 26:
1503-1514.
Shafie, S.,
Mehmood, O.U. & Mustapha, N. 2013. Thermal
diffusion and diffusion thermo effects on peristaltic flow of Sisko fluid in non-uniform channel with dissipative heating.
Journal of Heat Transfer, Transactions of
ASME 135(12): 122004.
Srinivas, S.
& Muthuraj, R. 2010. MHD flow with slip effects and temperature dependent heat source in a vertical wavy
porous space. Chemical Engineering Communications 197: 1387-1403.
Srinivas, S., Gayathri, R. & Kothandapani,
M. 2011. Mixed convective heat and mass transfer in an asymmetric channel with
peristalsis. Communications in Nonlinear Science and Numerical Simulation 16:
1845-1862.
Yildirim, A. & Sezer, S.A. 2010. Effects of partial slip
on the peristaltic flow of a MHD Newtonian fluid in an asymmetric channel. Mathematical and Computer Modelling 52: 618-625.
*Corresponding author; email: norzieha@utm.my
|