حل عددی معادلات حرکت و انتقال حرارت برای یک جریان مغناطیسی با توجه به یک ورق کششی ویژگیهای غیر یکنواخت سیال میکروپولار
Numerical solution of the momentum and heat transfer equations for a hydromagnetic flow due to a stretching sheet of a non-uniform property micropolar liquid
نویسندگان |
این بخش تنها برای اعضا قابل مشاهده است ورودعضویت |
اطلاعات مجله |
Applied Mathematics and Computation |
سال انتشار |
2011 |
فرمت فایل |
PDF |
کد مقاله |
21459 |
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چکیده (انگلیسی):
A study of the hydromagnetic flow due to a stretching sheet and heat transfer in an incompressible micropolar liquid is made. Temperature-dependent thermal conductivity and a non-uniform heat source/sink render the problem analytically intractable and hence a numerical study is made using the shooting method based on Runge–Kutta and Newton–Raphson methods. The two problems of horizontal and vertical stretching are considered to implement the numerical method. The former problem involves one-way coupling between linear momentum and heat transport equations and the latter involves two-way coupling. Further, both the problems involve two-way coupling between the nonlinear equations of conservation of linear and angular momentums. A similarity transformation arrived at for the problem using the Lie group method facilitates the reduction of coupled, non-linear partial differential equations into coupled, non-linear ordinary differential equations. The algorithm for solving the resulting coupled, two-point, non-linear
boundary value problem is presented in great detail in the paper. Extensive computation on velocity and temperature profiles is presented for a wide range of values of the parameters, for prescribed surface temperature (PST) and prescribed heat flux (PHF) boundary conditions.
کلمات کلیدی مقاله (فارسی):
ورق کششی، هدایت حرارتی متغیر، منبع / سینک غیر یکنواخت گرما ، عدد گراسهوف، روش تیراندازی
کلمات کلیدی مقاله (انگلیسی):
Stretching sheet, Variable thermal conductivity, Non-uniform heat source/sink, Grashof number, Shooting method
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