Literature DB >> 31805484

Micropolar gold blood nanofluid flow and radiative heat transfer between permeable channels.

Zahir Shah1, Arshad Khan2, Waris Khan3, M Kamran Alam4, Saeed Islam5, Poom Kumam6, Phatiphat Thounthong7.   

Abstract

This article characterizes flow and heat transmission of blood that carries the micropolar nanofluid of gold in a permeable channel. The thermal radiations are also present in the channel while its walls are either moving or stationary. The base-fluid is considered as blood while micro polar nanofluid is taken as gold. By using similarity transformations along with dimensionless quantities the modeled equations of the problem are transmuted into a system of non-linear ODEs with a set of appropriate boundary conditions. The semi-analytical method, HAM is then applied to determine the solution of a set of resultant equations. The results obtained by HAM have also compared with numerical solutions. The influence of non-dimensional parameters like fractional parameter suction/injection β, Reynolds Number Re, Darcys Number Da, micropolar parameter  K, Prandtl number Pr and Radiation parameter Rd etc., which provides physical interpretations of temperature, microrotation n and velocity fields are discussed in detail with the help of graphical representations. Nusselt number is calculated and presented through table. This study determined that the temperature of micropolar nanofluid augmented along with augmentation in the volume fraction. Radiation Rd augmented the heat transfer rate at the upper wall and reduce it at the lower wall. The suction/injection parameter 'β' reduces the heat transfer rate in case of β < 0 at the upper wall, where it is augmented at lower wall.
Copyright © 2019 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Darcy number; Gold-blood; Homotopy Analysis Method (HAM); Micropolar nanoparticles; Permeable channel; Thermal radiations

Mesh:

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Year:  2019        PMID: 31805484     DOI: 10.1016/j.cmpb.2019.105197

Source DB:  PubMed          Journal:  Comput Methods Programs Biomed        ISSN: 0169-2607            Impact factor:   5.428


  4 in total

1.  Thermal analysis of different shape nanoparticles on hyperthermia therapy on breast cancer in a porous medium: A fractional model.

Authors:  Ata Ur Rahman; Poom Kumam; Wiboonsak Watthayu; Kanokwan Sitthithakerngkiet; Ahmed M Galal
Journal:  Heliyon       Date:  2022-08-11

2.  Thermally Dissipative Flow and Entropy Analysis for Electromagnetic Trihybrid Nanofluid Flow Past a Stretching Surface.

Authors:  Kamel Guedri; Arshad Khan; Taza Gul; Safyan Mukhtar; Wajdi Alghamdi; Mansour F Yassen; Elsayed Tag Eldin
Journal:  ACS Omega       Date:  2022-09-02

3.  MHD micropolar hybrid nanofluid flow over a flat surface subject to mixed convection and thermal radiation.

Authors:  Showkat Ahmad Lone; Maryam Ahmed Alyami; Anwar Saeed; Abdullah Dawar; Poom Kumam; Wiyada Kumam
Journal:  Sci Rep       Date:  2022-10-14       Impact factor: 4.996

4.  A semi-analytical passive strategy to examine the water-ethylene glycol (50:50)-based hybrid nanofluid flow over a spinning disk with homogeneous-heterogeneous reactions.

Authors:  Ebrahem A Algehyne; Nifeen H Altaweel; Anwar Saeed; Abdullah Dawar; Muhammad Ramzan; Poom Kumam
Journal:  Sci Rep       Date:  2022-10-12       Impact factor: 4.996

  4 in total

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