Effects of chemical reaction and space porosity on MHD mixed convective flow in a vertical asymmetric channel with peristalsis
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Publication:652846
DOI10.1016/j.mcm.2011.03.032zbMath1228.76186OpenAlexW1998479917MaRDI QIDQ652846
Publication date: 18 December 2011
Published in: Mathematical and Computer Modelling (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.mcm.2011.03.032
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Cites Work
- Non-linear peristaltic transport of a Newtonian fluid in an inclined asymmetric channel through a porous medium
- The influence of heat transfer and magnetic field on peristaltic transport of a Newtonian fluid in a vertical annulus: application of an endoscope
- Peristaltic flow and heat transfer in a vertical porous annulus, with long wave approximation
- Mixed convective heat and mass transfer in a vertical wavy channel with traveling thermal waves and porous medium
- The influence of slip conditions, wall properties and heat transfer on MHD peristaltic transport
- Peristaltic flow of a Maxwell fluid in a channel with compliant walls
- Effect of the induced magnetic field on peristaltic flow of a couple stress fluid
- On the influence of wall properties in the MHD peristaltic transport with heat transfer and porous medium
- Heat transfer in a peristaltic flow of MHD fluid with partial slip
- Influence of heat transfer on peristaltic transport of a Johnson-Segalman fluid in an inclined asymmetric channel
- Peristaltic transport of a Newtonian fluid in a vertical asymmetric channel with heat transfer and porous medium
- Mixed convective heat and mass transfer in a non-Newtonian fluid at a peristaltic surface with temperature-dependent viscosity
- Analysis of intra-uterine fluid motion induced by uterine contractions
- Effect of heat transfer on the peristaltic flow of an electrically conducting fluid in a porous space
- The influence of wall properties on the MHD peristaltic flow of a Maxwell fluid with heat and mass transfer
- Heat transfer analysis of peristaltic flow in a curved channel
- The influence of heat and mass transfer on MHD peristaltic flow through a porous space with compliant walls
- On the influence of heat transfer in peristalsis with variable viscosity
- Peristaltic transport of a Newtonian fluid in an asymmetric channel
- Peristaltic transport of non-Newtonian fluid in a diverging tube with different wave forms
- Influence of wall properties on peristaltic transport with heat transfer
- Effects of heat transfer and space porosity on peristaltic flow in a vertical asymmetric channel
- Peristaltic pumping and irreversibility of a Stokesian viscoelastic fluid
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