Heat transfer enhancement in unsteady mhd natural convective flow of CNTs oldroyd-B nanofluid under ramped wall velocity and ramped wall temperature

18Citations
Citations of this article
15Readers
Mendeley users who have this article in their library.

Abstract

This article analyzes heat transfer enhancement in incompressible time dependent magnetohydrodynamic (MHD) convective flow of Oldroyd-B nanofluid with carbon nanotubes (CNTs). Single wall carbon nanotubes (SWCNTs) and multi-wall carbon nanotubes (MWCNTs) are immersed in a base fluid named Sodium alginate. The flow is restricted to an infinite vertical plate saturated in a porous material incorporating the generalized Darcy's law and heat suction/injection. The governing equations for momentum, shear stress and energy are modelled in the form of partial differential equations along with ramped wall temperature and ramped wall velocity boundary conditions. Laplace transformation is applied to convert principal partial differential equations to ordinary differential equations first and, later, complex multivalued functions of Laplace parameter are handled with numerical inversion to obtain the solutions in real time domain. Expression for Nusselt number is also obtained to clearly examine the difference in rate of heat transfer. A comparison for isothermal wall condition and ramped wall condition is also made to analyze the difference in both profiles. A graphical study is conducted to analyze how the fluid profiles are significantly affected by several pertinent parameters. Rate of heat transfer increases with increasing volume fraction of nanoparticle while shear stress reduces with elevation in retardation time. Moreover, flow gets accelerated with increase in Grashof number and Porosity parameter. For every parameter, a comparison between solutions of SWCNTs and MWCNTs is also presented.

References Powered by Scopus

NUMERICAL INVERSION OF LAPLACE TRANSFORMS: AN EFFICIENT IMPROVEMENT TO DUBNER AND ABATE'S METHOD.

1071Citations
N/AReaders
Get full text

The effects of MHD and temperature dependent viscosity on the flow of non-Newtonian nanofluid in a pipe: Analytical solutions

649Citations
N/AReaders
Get full text

Model for thermal conductivity of carbon nanotube-based composites

640Citations
N/AReaders
Get full text

Cited by Powered by Scopus

Finite element investigation of Dufour and Soret impacts on MHD rotating flow of Oldroyd-B nanofluid over a stretching sheet with double diffusion Cattaneo Christov heat flux model

136Citations
N/AReaders
Get full text

4 E's (Energy, Exergy, Economic, Environmental) performance analysis of air heat exchanger equipped with various twisted turbulator inserts utilizing ternary hybrid nanofluids

28Citations
N/AReaders
Get full text

Analytical Simulation of Hall Current and Cattaneo–Christov Heat Flux in Cross-Hybrid Nanofluid with Autocatalytic Chemical Reaction: An Engineering Application of Engine Oil

16Citations
N/AReaders
Get full text

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Cite

CITATION STYLE

APA

Anwar, T., Kumam, P., Khan, I., & Watthayu, W. (2020). Heat transfer enhancement in unsteady mhd natural convective flow of CNTs oldroyd-B nanofluid under ramped wall velocity and ramped wall temperature. Entropy, 22(4). https://doi.org/10.3390/E22040401

Readers over time

‘20‘21‘22‘23‘2401234

Readers' Seniority

Tooltip

Lecturer / Post doc 3

43%

Professor / Associate Prof. 2

29%

PhD / Post grad / Masters / Doc 1

14%

Researcher 1

14%

Readers' Discipline

Tooltip

Mathematics 2

33%

Engineering 2

33%

Business, Management and Accounting 1

17%

Computer Science 1

17%

Article Metrics

Tooltip
Social Media
Shares, Likes & Comments: 71

Save time finding and organizing research with Mendeley

Sign up for free
0