Micropolar Fluid Flow Induced due to a Stretching Sheet with Heat Source/Sink and Surface Heat Flux Boundary Condition Effects
عنوان مقاله: Micropolar Fluid Flow Induced due to a Stretching Sheet with Heat Source/Sink and Surface Heat Flux Boundary Condition Effects
شناسه ملی مقاله: JR_JACM-5-5_001
منتشر شده در شماره 5 دوره 5 فصل در سال 1398
شناسه ملی مقاله: JR_JACM-5-5_001
منتشر شده در شماره 5 دوره 5 فصل در سال 1398
مشخصات نویسندگان مقاله:
MD Shamshuddin - Department of Mathematics, Vaagdevi College of Engineering, Warangal -۵۰۶۰۰۵, Telangana, India
Thumma Thirupathi - Department of Mathematics, B V Raju Institute of Technology, Medak-۵۰۲۳۱۳, Telangana, India
P.V. Satya Narayana - Department of Mathematics, SAS, Vellore institute of Technology (VIT University), Vellore-۶۳۲۰۱۴, Tamilnadu, India
خلاصه مقاله:
MD Shamshuddin - Department of Mathematics, Vaagdevi College of Engineering, Warangal -۵۰۶۰۰۵, Telangana, India
Thumma Thirupathi - Department of Mathematics, B V Raju Institute of Technology, Medak-۵۰۲۳۱۳, Telangana, India
P.V. Satya Narayana - Department of Mathematics, SAS, Vellore institute of Technology (VIT University), Vellore-۶۳۲۰۱۴, Tamilnadu, India
Computational and mathematical models provide an important compliment to experimental studies in the development of solar energy engineering in case of electro-conductive magnetic micropolar polymers. Inspired by further understanding the complex fluid dynamics of these processes, we examine herein the non-linear steady, hydromagnetic micropolar flow with radiation and heat source/sink effects included. The transformed non-dimensional governing partial differential equations are solved with the R-K fourth order with shooting technique subjected to appropriate boundary conditions. The characteristics of the embedded parameters are obtained and presented through graphs. Velocity and microrotation of the fluid decreased with enhancing values of material parameter and suction/injection parameter. Electric field parameter has ability to enhance velocity, but temperature shows opposite behaviour. Microrotation increases for both magnetic field and surface temperature parameters.
کلمات کلیدی: Micropolar fluid, Heat source/sink, Stretching sheet, Partial slip, Surface heat flux boundary conditions
صفحه اختصاصی مقاله و دریافت فایل کامل: https://civilica.com/doc/893941/