The work is aimed at describing the three-dimensional MHD flow of metal and metallic oxide nanofluids past a stretching/shrinking sheet embedding with a permeable media. Further, thermal properties enhance with by incorporating heat generation/absorption and radiative heat energy in the heat equation to enhance the efficiency of temperature profiles. Convective boundary condition for temperature is used which affects the temperature profile. Suitable similarity transformation is used to transform the governing equations to ordinary differential equations. The approximate analytical solution is obtained for these transformed differential equations employing the Adomian Decomposition Method (ADM). The influences of characterizing parameters are obtained and displayed via graphs and the computation results of heat transfer rate for various values of constraints are shown in a table. It is observed that both the momentum and energy profiles decrease with an enhance in porosity parameter also the fluid temperature decreases with an increasing thermal radiation parameter but the opposite effect is encountered for the energy generation/absorption parameter.
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نویسنده: مهندس نقوی
تاريخ: چهارشنبه
4 تير
1399 ساعت: 3:05