Convective heat transfer for Peristaltic flow of SWCNT inside a sinusoidal elliptic duct
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In this article, a mathematical model is presented to analyse the flow characteristics and heat transfer aspects of a heated Newtonian viscous fluid with single wall carbon nanotubes inside a vertical duct having elliptic cross section and sinusoidally fluctuating walls.Abstract:
A mathematical model is presented to analyse the flow characteristics and heat transfer aspects of a heated Newtonian viscous fluid with single wall carbon nanotubes inside a vertical duct having elliptic cross section and sinusoidally fluctuating walls. Exact mathematical computations are performed to get temperature, velocity and pressure gradient expressions. A polynomial solution technique is utilized to obtain these mathematical solutions. Finally, these computational results are presented graphically and different characteristics of peristaltic flow phenomenon are examined in detail through these graphs. The velocity declines as the volume fraction of carbon nanotubes increases in the base fluid. Since the velocity of fluid is dependent on its temperature in this study case and temperature decreases with increasing volumetric fraction of carbon nanotubes. Thus velocity also declines for increasing volumetric fraction of nanoparticles.read more
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References
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Peristaltic transport in an asymmetric channel with heat transfer — A note
TL;DR: In this paper, a two-dimensional asymmetric channel with peristaltic wave train on the walls to have different amplitudes and phase was investigated. And the effect of Hartmann number, Eckert number, width of the channel and phase angle on temperature and coefficient of heat transfer were discussed numerically and explained graphically.
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A study of peristaltic flow
TL;DR: In this article, the effect of channel width, wave amplitude, phase shift, and mean pressure gradient on the streamline pattern and properties of peristaltic flow in two-dimensional channels with sinusoidal waves is analyzed.
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Influence of induced magnetic field and heat flux with the suspension of carbon nanotubes for the peristaltic flow in a permeable channel
TL;DR: In this paper, the effects of heat flux and induced magnetic field for peristaltic flow of two different nanoparticles with the base fluid water in a symmetric vertical permeable channel were investigated.
Journal ArticleDOI
Peristaltic Waves in Circular Cylindrical Tubes
Frank C.P. Yin,Yuan-Cheng Fung +1 more