Study on the Heat and Mass Transport of Non- Newtonian Powell-Eyring Model Fluid Over Variable Thicker Sheet
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Date
2021
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Library Information Services, COMSATS University Islamabad, Lahore Campus
Abstract
Non-Newtonian fluids are used in a wide range of industries, including the polymer sector, the
food industry, and even everyday life. The viscosity behaviour of these fluids identifies their
rheological behaviour. Many factors affected viscosity change, including temperature, shear rate,
pressure, and so on. When heat and mass flows are explored simultaneously, these effects cannot
be underestimated, particularly temperature. In this thesis the problem for Study the Heat and Mass
flow of Non-Newtonian Powell-Eyring model fluid is explored across a variable thicker sheet. The
fluid is considered to be incompressible, laminar, non-newtonian over variable thicker sheet. All
the programming is done on MATHEMATICA. The mathematical model is based on partial
differential equations (PDEs) that represent continuity, momentum, and energy. To determine the
model's solution, it is first converted into an ordinary differential equation (ODEs), which is then
solved using the RK-Method. The model's output is presented in the form of velocity and
temperature profiles, as well as various parameters.
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Department of Mathematics, Sp20, Mathematics, owell–Eyring fluid, non-Newtonian fluid, heat transfer, Dr.Mohsan Hassan