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- W2964128272 abstract "The desire of the current article is to discover the pulse driven Couette flow of Ag-water based nanofluid restrained between two parallel plates with convective heat exchange with the ambient surrounding at the upper wall beneath the combined effects of thermophoresis, Brownian motion and temperature dependent viscosity. The Buongiorno model is considered to illustrate the current flow analysis effectively. In this analysis, water as the base fluid and silver (Ag) as nanoparticles are exercised. The governing flow equations are generalized with the help of boundary layer approximations. Momentum, energy, and nanoparticle concentration equations are generated numerically using finite difference method. The findings of non-dimensional parameters like Brownian motion parameter, Biot number, viscosity variation parameter, stretching velocity parameter, steady pressure gradient, phase angle, and amplitude are conferred graphically. As a final point, skin friction and Nusselt number are anticipated in numeric form with an excellent agreement. From the achieved outcomes, it is noticed that the velocity is directly proportional to the pulsatile pressure gradient." @default.
- W2964128272 created "2019-07-30" @default.
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- W2964128272 date "2019-01-01" @default.
- W2964128272 modified "2023-09-27" @default.
- W2964128272 title "Numerical study of the effect of variable viscosity on unsteady pulsatile nanofluid flow through a Couette channel of stretching wall with convective heat transfer" @default.
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- W2964128272 doi "https://doi.org/10.1063/1.5115912" @default.
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