This study numerically investigates the effects of thermal radiation on the flow over a black isothermal plate for an optically thin gray micropolar fluid. The flowing medium absorbs and emits radiation, but scattering is not included. The computational results are discussed graphically for several selected flow parameters.
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An exact solution to the problem of an unsteady two dimensional free convection flow past an infinite vertical porous plate, which moves with a constant velocity in a viscous and incompressible fluid in the presence of thermal radiation is presented. The Laplace transform technique is used. The fluid is a gray fluid, absorbing-emitting radiation but a non scattering medium.
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An analytical solution to the problem of the unsteady free convection flow of a gray fluid past an infinite vertical porous plate which moves with constant velocity in a viscous and incompressible fluid in the presence of radiation is presented by using the Laplace transform technique. The effect of e radiation on the velocity and temperature are presented graphically.
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In this paper, we study the effects of thermal radiation on the unsteady free convection and mass transfer boundary layer over a vertical moving plate of an optically thin gray gas.
This paper deals with the effects of thermal radiation by taking into account the free convection flow over a moving plate. The fluid considered is a gray, absorbing-emitting radiation but non-scattering medium.
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