نتایج جستجو برای: mhd channel flow
تعداد نتایج: 693714 فیلتر نتایج به سال:
This paper analyzes the MHD flow and heat transfer of a pure fluid nanofluid through porous medium in vertical channel. The right half channel contains left nanofluid, which is immiscible with half. Channel walls are impermeable at constant temperatures. An external homogeneous magnetic field perpendicular to applied on Darcian approach used model medium. Relevant differential equations solved ...
Heat transfer in closed channel flows of molten salts (MS)s, such as FLiBe or FLiNaBe, has been considered under specific reactor conditions. MHD effects have been accessed for two blanket concepts: self-cooled MS blanket, and dual-coolant MS blanket. The effect of heat transfer degradation due to turbulence reduction by a magnetic field in the First Wall channels of the selfcooled blanket was ...
The pulsating flow of MHD Casson nanofluid through a channel with the influence thermal radiation is studied, considering in vertically upward direction, maintaining same velocity at lower wall and upper wall. perturbation technique was employed to solve dimensionless expressions temperature. effect various parameters such as Prandtl number fluid parameter on variables has been discussed.
For understanding the structure of an MHD-scale Kelvin-Helmholtz Instability (KHI) in a non-linear stage, we have performed two-dimensional two-fluid simulations including finite electron inertial effects. In the twofluid system, magnetic reconnection occurs spontaneously because the ’frozen-in’ condition can be broken by the electron inertial effects. When an MHD-scale velocity shear exists, a...
An oscillatory MHD convective flow of an incompressible, viscoelastic and electrically conducting fluid in a vertical porous channel is analyzed. The two porous plates are subjected to a constant injection and suction velocity as shown in Fig.1. A magnetic field of uniform strength is applied perpendicular to the plates of the channel. The magnetic Reynolds number is assumed to be very small so...
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