RT Journal Article ID 4ea4898358f04c5e A1 Chamkha, Ali J. A1 Al-Rashidi, Seham S. T1 SOLUTIONS FOR MHD NATURAL CONVECTION FLOW OF A PARTICULATE SUSPENSION THROUGH A VERTICAL CHANNEL WITH ASYMMETRIC THERMAL BOUNDARY CONDITIONS JF Heat Transfer Research JO HTR YR 2013 FD 2013-03-28 VO 44 IS 2 SP 215 OP 243 K1 particulate suspension K1 two-phase flow K1 natural convection K1 channel K1 analytical solutions K1 MHD K1 heat generation/absorption AB A continuum model for two-phase (fluid/particle) flow induced by natural convection is developed and applied to the problem of steady natural convection MHD flow of a particulate suspension through an infinitely long vertical channel in the presence of heat generation or absorption effects. The walls of the channel are heated asymmetrically such that one of the channel walls is maintained at a constant heat flux, while the other is maintained at a constant temperature. The boundary conditions borrowed from the rarefied gas dynamics are employed for the particle-phase wall velocity conditions. Various closed-form solutions for different special cases are obtained. A parametric study of some physical parameters involved in the problem is done to illustrate the influence of these parameters on the flow and thermal aspects of the problem. PB Begell House LK https://www.dl.begellhouse.com/journals/46784ef93dddff27,39a25f653906907b,4ea4898358f04c5e.html