Iris Publishers - Modern Concepts in Material Science (MCMS)
Analysis of Fly Ash and Paramagnetic Nanoparticles with Hybrid Base Fluid Due to Applied Magnetic Dipole in a Stretching Sheet with Momentum Slip Condition: FEM Approach
In this
article, a comprehensive analysis is performed for fly ash and paramagnetic ( T
a ) nanoparticles with a hybrid base and micro polar fluid with momentum slip
conditions over a stretching sheet. With the aid of the similarity
transformation, the PDEs obtained are transmuted in the nonlinear ODE system,
after which the numerical simulation is performed with the finite element
method. The effect of physical parameters on velocity, micro rotation, and
temperature are analyzed graphically. Results reveal that the velocity boundary
layer thickness for fly ash nanoparticles is higher than paramagnetic and
thermal conductivity of paramagnetic is higher than fly ash nanoparticles. The
paramagnetic nanoparticles are, therefore, the best coolant. The comparison of
the finite element method with previous researches is tabled and found in a
good agreement.
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