Research Article

ANALYTICAL STUDY OF A TWO-PHASE REVOLVING SYSTEM OF NANOFLUID FLOW IN THE PRESENCE OF A MAGNETIC FIELD TO IMPROVE HEAT TRANSFER

Volume: 37 Number: 2 June 1, 2019
  • Mosayeb Gholınıa
  • Hossein Javadı
  • Ali Gatabı
  • Amirhossein Khodabakhshı
  • Davood Domiri Ganjı

ANALYTICAL STUDY OF A TWO-PHASE REVOLVING SYSTEM OF NANOFLUID FLOW IN THE PRESENCE OF A MAGNETIC FIELD TO IMPROVE HEAT TRANSFER

Abstract

In this research, heat transfer of nanofluid flow in a two-phase revolving system considering the magnetic field is investigated. The fundamental partial differential equations of momentum, mass, and energy reduced to the nonlinear ordinary differential equations which are solved using Akbari-Ganji’s Method (AGM). The introduced method solves problems based on the Trial Function. The comparison between the numerical (Runge-Kutta Fourth-Order Method) and analytical results indicates great agreement in solving the nonlinear differential equations. Also, the impact of Schmidt (Sc) number and parameters such as Brownian (Nb) parameter, Magnetic parameter (M), Melting parameter (δ), Viscosity parameter (R), Rotating parameter (Kr), and Thermophoretic (Nt) parameter on the profiles of velocity (g(η), f'(η), f(η)), temperature (θ), concentration (ϕ), Nusselt number (Nu), and surface friction coefficient (Cf) are studied. Conclusions show that by the increase in Viscosity parameter, the temperature profile increases in the range of [0, 1], but with the increase in Melting parameter, temperature profile decreases. In addition, by increasing Rotating parameter or decreasing Brownian parameter, the surface friction coefficient profile increases from top to bottom plate. Furthermore, the results show that nanofluid heat transfer rate in a two-phase revolving system can be improved by controlling the magnetic field.

Keywords

References

  1. [1] Qayyum S, Khan R, Habib H. Simultaneous effects of melting heat transfer and inclined magnetic field flow of tangent hyperbolic fluid over a nonlinear stretching surface with homogeneous–heterogeneous reactions. International Journal of Mechanical Sciences. 2017 Nov 1; 133:1-0.
  2. [2] Ibrahim W. Magneto hydrodynamic (MHD) boundary layer stagnation point flow and heat transfer of a nanofluid past a stretching sheet with melting. Propulsion and Power Research. 2017 Sep 1;6(3):214-22.
  3. [3] Gupta S, Kumar D, Singh J. MHD mixed convective stagnation point flow and heat transfer of an incompressible nanofluid over an inclined stretching sheet with chemical reaction and radiation. International Journal of Heat and Mass Transfer. 2018 Mar 31; 118:378-87.
  4. [4] Sheikholeslami, M., 2018. Application of Darcy law for nanofluid flow in a porous cavity under the impact of Lorentz forces. Journal of Molecular Liquids, 266, pp.495-503.
  5. [5] Sheikholeslami, M. and Rokni, H.B., 2018. CVFEM for effect of Lorentz forces on nanofluid flow in a porous complex shaped enclosure by means of non-equilibrium model. Journal of Molecular Liquids, 254, pp.446-462.
  6. [6] Sheikholeslami, M., Li, Z. and Shafee, A., 2018. Lorentz forces effect on NEPCM heat transfer during solidification in a porous energy storage system. International Journal of Heat and Mass Transfer, 127, pp.665-674.
  7. [7] Sheikholeslami, M., Shehzad, S.A., Abbasi, F.M. and Li, Z., 2018. Nanofluid flow and forced convection heat transfer due to Lorentz forces in a porous lid driven cubic enclosure with hot obstacle. Computer Methods in Applied Mechanics and Engineering, 338, pp.491-505.
  8. [8] Sheikholeslami, M. and Rokni, H.B., 2017. Numerical modeling of nanofluid natural convection in a semi annulus in existence of Lorentz force. Computer Methods in Applied Mechanics and Engineering, 317, pp.419-430.

Details

Primary Language

English

Subjects

-

Journal Section

Research Article

Authors

Mosayeb Gholınıa This is me
0000-0001-8291-8824
Iran

Amirhossein Khodabakhshı This is me
0000-0003-2699-3699
Iran

Davood Domiri Ganjı This is me
0000-0002-4293-5993
Iran

Publication Date

June 1, 2019

Submission Date

June 19, 2018

Acceptance Date

December 23, 2018

Published in Issue

Year 2019 Volume: 37 Number: 2

APA
Gholınıa, M., Javadı, H., Gatabı, A., Khodabakhshı, A., & Ganjı, D. D. (2019). ANALYTICAL STUDY OF A TWO-PHASE REVOLVING SYSTEM OF NANOFLUID FLOW IN THE PRESENCE OF A MAGNETIC FIELD TO IMPROVE HEAT TRANSFER. Sigma Journal of Engineering and Natural Sciences, 37(2), 340-360. https://izlik.org/JA38AW65YK
AMA
1.Gholınıa M, Javadı H, Gatabı A, Khodabakhshı A, Ganjı DD. ANALYTICAL STUDY OF A TWO-PHASE REVOLVING SYSTEM OF NANOFLUID FLOW IN THE PRESENCE OF A MAGNETIC FIELD TO IMPROVE HEAT TRANSFER. SIGMA. 2019;37(2):340-360. https://izlik.org/JA38AW65YK
Chicago
Gholınıa, Mosayeb, Hossein Javadı, Ali Gatabı, Amirhossein Khodabakhshı, and Davood Domiri Ganjı. 2019. “ANALYTICAL STUDY OF A TWO-PHASE REVOLVING SYSTEM OF NANOFLUID FLOW IN THE PRESENCE OF A MAGNETIC FIELD TO IMPROVE HEAT TRANSFER”. Sigma Journal of Engineering and Natural Sciences 37 (2): 340-60. https://izlik.org/JA38AW65YK.
EndNote
Gholınıa M, Javadı H, Gatabı A, Khodabakhshı A, Ganjı DD (June 1, 2019) ANALYTICAL STUDY OF A TWO-PHASE REVOLVING SYSTEM OF NANOFLUID FLOW IN THE PRESENCE OF A MAGNETIC FIELD TO IMPROVE HEAT TRANSFER. Sigma Journal of Engineering and Natural Sciences 37 2 340–360.
IEEE
[1]M. Gholınıa, H. Javadı, A. Gatabı, A. Khodabakhshı, and D. D. Ganjı, “ANALYTICAL STUDY OF A TWO-PHASE REVOLVING SYSTEM OF NANOFLUID FLOW IN THE PRESENCE OF A MAGNETIC FIELD TO IMPROVE HEAT TRANSFER”, SIGMA, vol. 37, no. 2, pp. 340–360, June 2019, [Online]. Available: https://izlik.org/JA38AW65YK
ISNAD
Gholınıa, Mosayeb - Javadı, Hossein - Gatabı, Ali - Khodabakhshı, Amirhossein - Ganjı, Davood Domiri. “ANALYTICAL STUDY OF A TWO-PHASE REVOLVING SYSTEM OF NANOFLUID FLOW IN THE PRESENCE OF A MAGNETIC FIELD TO IMPROVE HEAT TRANSFER”. Sigma Journal of Engineering and Natural Sciences 37/2 (June 1, 2019): 340-360. https://izlik.org/JA38AW65YK.
JAMA
1.Gholınıa M, Javadı H, Gatabı A, Khodabakhshı A, Ganjı DD. ANALYTICAL STUDY OF A TWO-PHASE REVOLVING SYSTEM OF NANOFLUID FLOW IN THE PRESENCE OF A MAGNETIC FIELD TO IMPROVE HEAT TRANSFER. SIGMA. 2019;37:340–360.
MLA
Gholınıa, Mosayeb, et al. “ANALYTICAL STUDY OF A TWO-PHASE REVOLVING SYSTEM OF NANOFLUID FLOW IN THE PRESENCE OF A MAGNETIC FIELD TO IMPROVE HEAT TRANSFER”. Sigma Journal of Engineering and Natural Sciences, vol. 37, no. 2, June 2019, pp. 340-6, https://izlik.org/JA38AW65YK.
Vancouver
1.Mosayeb Gholınıa, Hossein Javadı, Ali Gatabı, Amirhossein Khodabakhshı, Davood Domiri Ganjı. ANALYTICAL STUDY OF A TWO-PHASE REVOLVING SYSTEM OF NANOFLUID FLOW IN THE PRESENCE OF A MAGNETIC FIELD TO IMPROVE HEAT TRANSFER. SIGMA [Internet]. 2019 Jun. 1;37(2):340-6. Available from: https://izlik.org/JA38AW65YK

IMPORTANT NOTE: JOURNAL SUBMISSION LINK https://eds.yildiz.edu.tr/sigma/