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In the present study wire coating is performed using melt polymer satisfying third grade fluid model.
A study on thermal effects of the suction/injection Reynolds number, in conjunction with other flow parameters, on an unsteady reactive temperature dependent viscosity third grade fluid in a porous channel filled with saturated porous medium is presented.
The analysis of the obtained results showed that the flow field is appreciably influenced by the material parameter of the second grade fluid, the imposed frequency, rotation and porosity parameters.
The study is based on a second grade fluid model.
Similarly Hayat et al. [19] in 2007 considered a steady second grade fluid.
In [9], some unsteady flow problems of a second grade fluid were considered.
In the case of second grade fluid, our results are identical with those of Khan et al. [22].
Unsteady magnetohydrodynamic (MHD) flow of a second grade fluid over a stretching sheet is a focus of this steady.
Siddiqui et al. [27] extended the work of [28] for second grade fluid through constricted tube with time-independent stenosis.
Yurusoy et al. [21] have obtained the solution for the creeping flow of the second grade fluid.
The simplest subclass of viscoelastic fluids is the second grade fluid, for which an analytic solution is possible.
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