Peristaltic transport of a Williamson fluid in asymmetric channels with permeable walls

The peristaltic flow of a Williamson fluid in asymmetric channels with permeable walls is investigated. The channel asymmetry is produced by choosing a peristaltic wave train on the wall with different amplitudes and phases. The solutions for stream function, axial velocity and pressure gradient are...

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Published inNonlinear analysis: real world applications Vol. 13; no. 6; pp. 2804 - 2822
Main Authors Vajravelu, K., Sreenadh, S., Rajanikanth, K., Lee, Changhoon
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 01.12.2012
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Abstract The peristaltic flow of a Williamson fluid in asymmetric channels with permeable walls is investigated. The channel asymmetry is produced by choosing a peristaltic wave train on the wall with different amplitudes and phases. The solutions for stream function, axial velocity and pressure gradient are obtained for small Weissenberg number, We, via a perturbation expansion about We, while an exact solution method is discussed for large values of We. The exact solutions become singular as We tends to zero; hence the separate perturbation solutions are essential. Also, numerical results are obtained using the perturbation technique for the pumping and trapping phenomena, and these are used to bring out the qualitative features of the solutions. It is noted that the size of the trapped bolus decreases and its symmetry disappears for large values of the permeability parameter. The effects of various wave forms (namely, sinusoidal, triangular, square and trapezoidal) on the fluid flow are discussed.
AbstractList The peristaltic flow of a Williamson fluid in asymmetric channels with permeable walls is investigated. The channel asymmetry is produced by choosing a peristaltic wave train on the wall with different amplitudes and phases. The solutions for stream function, axial velocity and pressure gradient are obtained for small Weissenberg number, We, via a perturbation expansion about We, while an exact solution method is discussed for large values of We. The exact solutions become singular as We tends to zero; hence the separate perturbation solutions are essential. Also, numerical results are obtained using the perturbation technique for the pumping and trapping phenomena, and these are used to bring out the qualitative features of the solutions. It is noted that the size of the trapped bolus decreases and its symmetry disappears for large values of the permeability parameter. The effects of various wave forms (namely, sinusoidal, triangular, square and trapezoidal) on the fluid flow are discussed.
Author Rajanikanth, K.
Vajravelu, K.
Lee, Changhoon
Sreenadh, S.
Author_xml – sequence: 1
  givenname: K.
  surname: Vajravelu
  fullname: Vajravelu, K.
  email: kuppalapalle.vajravelu@ucf.edu
  organization: Department of Mathematics, University of Central Florida, Orlando, FL 32816, USA
– sequence: 2
  givenname: S.
  surname: Sreenadh
  fullname: Sreenadh, S.
  organization: Department of Mathematics, Sri Venkateswara University, Tirupati 517502, AP, India
– sequence: 3
  givenname: K.
  surname: Rajanikanth
  fullname: Rajanikanth, K.
  organization: Department of Mathematics, Sri Venkateswara University, Tirupati 517502, AP, India
– sequence: 4
  givenname: Changhoon
  surname: Lee
  fullname: Lee, Changhoon
  organization: School of Mechanical Engineering, Yonsei University, Seoul 120-749, South Korea
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Keywords Permeable walls
Trapping phenomena
Williamson fluid
Peristaltic transport
Asymmetric flow
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Snippet The peristaltic flow of a Williamson fluid in asymmetric channels with permeable walls is investigated. The channel asymmetry is produced by choosing a...
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SourceType Aggregation Database
Publisher
StartPage 2804
SubjectTerms Asymmetric flow
Asymmetry
Channels
Fluid flow
Fluids
Mathematical analysis
Mathematical models
Peristaltic transport
Permeable walls
Perturbation methods
Trapping phenomena
Walls
Williamson fluid
Title Peristaltic transport of a Williamson fluid in asymmetric channels with permeable walls
URI https://dx.doi.org/10.1016/j.nonrwa.2012.04.008
https://search.proquest.com/docview/1038245194
https://search.proquest.com/docview/1709767454
Volume 13
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