Analysis of entropy generation in peristaltic nanofluid flow with Ohmic heating and Hall current

被引:50
作者
Abbasi, F. M. [1 ]
Shanakhat, I [1 ]
Shehzad, S. A. [2 ]
机构
[1] COMSATS Univ Islamabad, Dept Math, Islamabad 44000, Pakistan
[2] COMSATS Univ Islamabad, Dept Math, Sahiwal 57000, Pakistan
关键词
entropy; peristalsis; HPM; nanofluids; Hall effects; Ohmic heating effects; WATER NANOFLUID; TRANSPORT; VISCOSITY; CHANNEL; FLUID; MODEL;
D O I
10.1088/1402-4896/aaf600
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
An analysis of entropy generation in motion of peristaltic nanofluid through a symmetric channel with Ohmic heating and Hall effects is made here. In this study, the effects of distinct parameters (nanoparticles volume fraction, Hartman number, Hall parameter, etc) on temperature, entropy generation, Bejan number, velocity and heat transfer rate are analyzed. Mathematical modeling is executed by the implementation of low Reynolds number and long-wavelength assumptions. Final nonlinear system has been solved using homotopy perturbation method. Physical analysis has been carried out through graphs. For comparison, numeric and analytic solutions are presented. Moreover, comparisons of numeric and analytic results of heat transportation rate are provided in tabular form. Results indicate that temperature is boosted by the enhancement of Hartman number. Further, entropy generation number shows increasing behavior for rise in the value of heat absorption/generation parameter.
引用
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页数:12
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共 40 条
[1]   Entropy generation analysis for peristalsis of nanofluid with temperature dependent viscosity and Hall effects [J].
Abbasi, F. M. ;
Shanakhat, I ;
Shehzad, S. A. .
JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS, 2019, 474 :434-441
[2]   Hall effects on peristalsis of boron nitride-ethylene glycol nanofluid with temperature dependent thermal conductivity [J].
Abbasi, F. M. ;
Gul, Maimoona ;
Shehzad, S. A. .
PHYSICA E-LOW-DIMENSIONAL SYSTEMS & NANOSTRUCTURES, 2018, 99 :275-284
[3]   Transport of Cu-H2O nanofluid through a channel with wavy walls under velocity slip and connective boundary conditions [J].
Abbasi, F. M. ;
Hayat, T. ;
Alsaedi, A. .
INTERNATIONAL JOURNAL OF BIOMATHEMATICS, 2016, 9 (02)
[4]   Peristalsis of silver-water nanofluid in the presence of Hall and Ohmic heating effects: Applications in drug delivery [J].
Abbasi, F. M. ;
Hayat, T. ;
Ahmad, B. .
JOURNAL OF MOLECULAR LIQUIDS, 2015, 207 :248-255
[5]   Peristaltic transport of magneto-nanoparticles submerged in water: Model for drug delivery system [J].
Abbasi, F. M. ;
Hayat, T. ;
Alsaedi, A. .
PHYSICA E-LOW-DIMENSIONAL SYSTEMS & NANOSTRUCTURES, 2015, 68 :123-132
[6]   Peristaltic transport of copper-water nanofluid saturating porous medium [J].
Abbasi, F. M. ;
Hayat, T. ;
Ahmad, B. .
PHYSICA E-LOW-DIMENSIONAL SYSTEMS & NANOSTRUCTURES, 2015, 67 :47-53
[7]  
Abbasi F. M., 2015, J MOL LIQ, P207
[8]   Numerical prediction of entropy generation due to natural convection from a horizontal cylinder [J].
Abu-Hijleh, BA ;
Abu-Qudais, M ;
Abu Nada, E .
ENERGY, 1999, 24 (04) :327-333
[9]   Non-Newtonian fluid flow induced by peristaltic waves in a curved channel [J].
Ali, N. ;
Sajid, M. ;
Abbas, Z. ;
Javed, T. .
EUROPEAN JOURNAL OF MECHANICS B-FLUIDS, 2010, 29 (05) :387-394
[10]   Comparative analysis between 36 nm and 47 nm alumina-water nanofluid flows in the presence of Hall effect [J].
Animasaun, I. L. ;
Koriko, O. K. ;
Adegbie, K. S. ;
Babatunde, H. A. ;
Ibraheem, R. O. ;
Sandeep, N. ;
Mahanthesh, B. .
JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2019, 135 (02) :873-886