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Natural-Convection Flow Along a Vertical Complex Wavy Surface With Uniform Heat Flux

机译:沿具有均匀热通量的垂直复杂波浪表面的自然对流

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A natural-convection boundary layer along a vertical complex wavy surface with uniform heat flux has been investigated. The complex surface studied combines two sinusoidal functions, a fundamental wave and its first harmonic. Using a method of transformed coordinates, the boundary-layer equations are mapped into a regular and stationary computational domain. The transformed equations can then be solved straightforwardly by any number of numerical methods designed for regular and stationary geometries. In this paper, an implicit finite-difference method is used. The results were readily obtained on a personal computer. The numerical results demonstrate that the additional harmonic substantially alters the flow field and temperature distribution near the surface. The induced velocity normal to the y axis can substantially thicken the boundary layer, implying that its growth is not due solely to the momentum and thermal diffusion normal to the y axis along a wavy surface.
机译:已经研究了具有均匀热通量的垂直复杂波浪表面上的自然对流边界层。研究的复杂表面结合了两个正弦函数,一个基波及其一阶谐波。使用变换坐标的方法,将边界层方程式映射到常规和固定的计算域中。然后,可以通过为常规和固定几何设计的多种数值方法直接求解变换后的方程。在本文中,使用了隐式有限差分方法。结果很容易在个人计算机上获得。数值结果表明,附加谐波会显着改变表面附近的流场和温度分布。垂直于y轴的感应速度可使边界层实质上变厚,这意味着边界层的增长并非仅归因于垂直于y轴沿着波浪形表面的动量和热扩散。

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