Volume 1: Heat Transfer in Energy Systems; Thermophysical Properties; Heat Transfer Equipment; Heat Transfer in Electronic Equi 2009
DOI: 10.1115/ht2009-88383 View full text |Buy / Rent full text
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Abstract: In the present work, the second law of thermodynamics analysis has been carried out for steady state hydrodynamically and thermally fully developed laminar gas flow in annulus microchannels with asymmetrically heated walls. The rarefaction effects are taken into consideration using first order slip velocity and temperature jump boundary conditions. Viscous heating is also included for both the hot wall and the cold wall cases. Using the velocity distribution obtained in earlier works, the energy equation is so… Show more

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“…Sadeghi et al 22 carried out the second law of thermodynamics analysis for steady-state hydrodynamically and thermally fully developed laminar gas flow in annulus microchannels with asymmetrically heated walls. The researchers took into consideration the rarefaction effects using first-order slip velocity and temperature jump boundary conditions.…”
Section: Entropy Generation In Microchannels In the Absence Of Nanofluidsmentioning
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“…Sadeghi et al 22 carried out the second law of thermodynamics analysis for steady-state hydrodynamically and thermally fully developed laminar gas flow in annulus microchannels with asymmetrically heated walls. The researchers took into consideration the rarefaction effects using first-order slip velocity and temperature jump boundary conditions.…”
Section: Entropy Generation In Microchannels In the Absence Of Nanofluidsmentioning