Convective flow and temperature distribution in rotatinginclined composite porous and fluid layers
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Creator 1. Karuna Sree Chitturi
2. Sri Ramachandra Murty P.
3. Sobhan Babu K.
Title Convective flow and temperature distribution in rotatinginclined composite porous and fluid layers
Publisher Research and Development Office, Prince of Songkla University
Publication Year 2565
Journal Title Songklanakarin Journal of Science an Technology (SJST)
Journal Vol. 44
Journal No. 2
Page no. 370-380
Keyword convective flow, inclined, rotating, composite, porous, fluid layers
URL Website https://rdo.psu.ac.th/sjst/index.php
ISSN 0125-3395
Abstract Convective flow and temperature distribution in rotating inclined composite porous and fluid layers, in which the pressuregradient is kept constant, is analytically studied. The fluids in all the domains are distinct in thermal conductivities, viscosities anddensities. The flow is assumed to be steady, two dimensional, laminar and fully developed. Due to the inclusion of buoyancy forces,viscous and Darcy dissipation terms, the governing equations are non-linear and coupled. The solutions for region II are obtainedby the regular Perturbation process, whereas the solutions for region I and region III are obtained by solving them as lineardifferential equations with constant coefficients. The outcomes of the governing parameters on the fluid flow are numericallycomputed and graphically depicted and inspected in detail. It is observed that increase in Coriolis force incorporated through theporous and rotation parameters reduces the temperature and axial velocity of fluid in the three regions.
Songklanakarin Journal of Science and Technology (SJST)

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