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Significance low oscillating magnetic field and Hall current in the nano-ferrofluid flow past a rotating stretchable disk.
Ramzan, Muhammad; Riasat, Saima; Zhang, Yan; Nisar, Kottakkaran Sooppy; Badruddin, Irfan Anjum; Ahammad, N Ameer; Ghazwani, Hassan Ali S.
Affiliation
  • Ramzan M; Department of Computer Science, Bahria University, Islamabad, 44000, Pakistan. mramzan@bahria.edu.pk.
  • Riasat S; School of Science, Beijing University of Civil Engineering and Architecture, Beijing, 100044, China. mramzan@bahria.edu.pk.
  • Zhang Y; Department of Computer Science, Bahria University, Islamabad, 44000, Pakistan.
  • Nisar KS; School of Science, Beijing University of Civil Engineering and Architecture, Beijing, 100044, China.
  • Badruddin IA; Beijing Key Laboratory of Functional Materials for Building Structure and Environment Remediation, Beijing University of Civil Engineering and Architecture, Beijing, 100044, China.
  • Ahammad NA; Department of Mathematics, College of Arts and Sciences, Prince Sattam Bin Abdulaziz University, Wadi Aldawaser, 11991, Saudi Arabia.
  • Ghazwani HAS; Research Center for Advanced Materials Science (RCAMS), King Khalid University, P.O. Box 9004, Abha, 61413, Asir, Saudi Arabia.
Sci Rep ; 11(1): 23204, 2021 Dec 01.
Article de En | MEDLINE | ID: mdl-34853375
ABSTRACT
The present investigation involves the Hall current effects past a low oscillating stretchable rotating disk with Joule heating and the viscous dissipation impacts on a Ferro-nanofluid flow. The entropy generation analysis is carried out to study the impact of rotational viscosity by applying a low oscillating magnetic field. The model gives the continuity, momentum, temperature, magnetization, and rotational partial differential equations. These equations are transformed into the ODEs and solved by using bvp4c MATLAB. The graphical representation of arising parameters such as effective magnetization and nanoparticle concentration on thermal profile, velocity profile, and rate of disorder along with Bejan number is presented. Drag force and the heat transfer rate are given in the tabular form. It is comprehended that for increasing nanoparticle volume fraction and magnetization parameter, the radial, and tangential velocity reduce while thermal profile surges. The comparison of present results for radial and axial velocity profiles with the existing literature shows approximately the same results.

Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Langue: En Journal: Sci Rep Année: 2021 Type de document: Article Pays d'affiliation: Pakistan

Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Langue: En Journal: Sci Rep Année: 2021 Type de document: Article Pays d'affiliation: Pakistan