Affiliation:
1. Department of Mathematics Osmania University Hyderabad Telangana India
Abstract
AbstractThis paper addresses the effects of porous medium in magnetohydrodynamic unsteady flows of the viscous nongray optical thinner liquid between two infinitely concentric perpendicular cylinders under the influence of time reliant periodical pressure gradients with respect to the an azimuthal direction applied magnetic domain. The effects of the thermally radiating as well as periodical walls temperatures are also taken into consideration. The governing nondimensional equations were altered into ordinary differential equations and these were then resolved in the expressions of the modified Bessels functions. The impacts of the different parameters on the velocity, temperature, skin frictions, and the rates of temperature transfers near the surfaces of the cylinders were evaluated computationally as well as these are discussed graphically. This was found that, the velocity of the fluid augments by an amplifying in penetrability of the absorbent medium. The buoyancy forces reasons the liquid flow to accelerated, and thereby causing the mass efflux to enhance proportionally. The reductions into fluid temperature are straight proportionate to the diminution into the thermal diffusivity. The current computations were reliable with those of the existing study in the limiting cases.
Subject
Fluid Flow and Transfer Processes,Condensed Matter Physics
Reference39 articles.
1. Flow and Heat Transfer of Cu-Water Nanofluid between a Stretching Sheet and a Porous Surface in a Rotating System
2. Effect of Particle Size on Effective Thermal Conductivity of Nanofluids
3. Particle shape effects on thermophysical properties of alumina nanofluids
4. Unsteady free convective MHD flow and mass transfer through porous medium in a rotating system with fluctuating heat source/sink and chemical reaction;Barik RN;J Appl Anal Comput,2014
5. Effects of heat generation/absorption on natural convection of nanofluids over the vertical plate embedded in a porous medium using drift‐flux model;Ghalambaz M;J Comput Appl Res Mech Eng,2014
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献