Magnetic field and gravity effects on peristaltic transport of a Jeffrey fluid in an asymmetric channel (Q1725213)
From MaRDI portal
| This is the item page for this Wikibase entity, intended for internal use and editing purposes. Please use this page instead for the normal view: Magnetic field and gravity effects on peristaltic transport of a Jeffrey fluid in an asymmetric channel |
scientific article; zbMATH DE number 7023263
| Language | Label | Description | Also known as |
|---|---|---|---|
| English | Magnetic field and gravity effects on peristaltic transport of a Jeffrey fluid in an asymmetric channel |
scientific article; zbMATH DE number 7023263 |
Statements
Magnetic field and gravity effects on peristaltic transport of a Jeffrey fluid in an asymmetric channel (English)
0 references
14 February 2019
0 references
Summary: In this paper, the peristaltic flow of a Jeffrey fluid in an asymmetric channel has been investigated. Mathematical modeling is carried out by utilizing long wavelength and low Reynolds number assumptions. Closed form expressions for the pressure gradient, pressure rise, stream function, axial velocity, and shear stress on the channel walls have been computed numerically. Effects of the Hartmann number, the ratio of relaxation to retardation times, time-mean flow, the phase angle and the gravity field on the pressure gradient, pressure rise, streamline, axial velocity, and shear stress are discussed in detail and shown graphically. The results indicate that the effect of Hartmann number, ratio of relaxation to retardation times, time-mean flow, phase angle, and gravity field are very pronounced in the peristaltic transport phenomena. Comparison was made with the results obtained in the presence and absence of magnetic field and gravity field.
0 references
0 references
0 references
0 references
0 references
0 references
0 references
0 references
0 references
0 references