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首页> 外文期刊>International Journal of Differential Equations >Analytical Analysis of Effects of Buoyancy, Internal Heat Generation, Magnetic Field, and Thermal Radiation on a Boundary Layer over a Vertical Plate with a Convective Surface Boundary Condition
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Analytical Analysis of Effects of Buoyancy, Internal Heat Generation, Magnetic Field, and Thermal Radiation on a Boundary Layer over a Vertical Plate with a Convective Surface Boundary Condition

机译:具有对流表面边界条件的垂直板上边界层对边界层对边界层效果的分析分析

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In this paper, the effects of magnetic field, thermal radiation, buoyancy force, and internal heat generation on the laminar boundary layer flow about a vertical plate in the presence of a convective surface boundary condition have been investigated. In the analysis, it is assumed that the left surface of the plate is in contact with a hot fluid, whereas a stream of cold fluid flows steadily over the right surface, and the heat source decays exponentially outwards from the surface of the plate. The governing nonlinear partial differential equations have been transformed into a set of coupled nonlinear ordinary differential equations with the help of similarity transformation which were solved analytically by applying the optimal homotopy asymptotic method. The variations of fluid velocity and surface temperature for different values of the Grashof number, magnetic parameter, Prandtl number, internal heat generation parameter, Biot number, and radiation absorption parameter are tabulated, graphed, and interpreted in physical terms. A comparison with previously published results on similar special cases of the problem shows an excellent agreement.
机译:本文研究了磁场,热辐射,浮力力和内部发热的影响,在对流表面边界条件存在下绕垂直板的缠绕层流动。在分析中,假设板的左表面与热流体接触,而冷流体流稳定地在右表面上流动,并且热源从板的表面呈指数向外衰减。通过应用最佳同型渐近方法,通过应用最佳同型渐近法在分析求解的相似性转化的帮助下转变为一组耦合非线性常分差分方程。在物理术语中制表,绘制和解释,在物理术语中,流体速度和表面温度的流体速度和表面温度的变化。与先前发表的结果对类似特殊情况的结果进行了比较,表明了很好的一致性。

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