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首页> 外文期刊>International journal of non-linear mechanics >The effects of transpiration on the boundary layer flow and heat transfer over a vertical slender cylinder
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The effects of transpiration on the boundary layer flow and heat transfer over a vertical slender cylinder

机译:蒸腾作用对垂直细长圆柱体边界层流动和传热的影响

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This paper deals with a theoretical (numerical) analysis of the effects that blowing/injection and suction have on the steady mixed convection or combined forced and free convection boundary layer flows over a vertical slender cylinder with a mainstream velocity and a wall surface temperature proportional to the axial distance along the surface of the cylinder. Both cases of buoyancy forces aid and oppose the development of the boundary layer are considered. Similarity equations are derived and their solutions are dependent upon the mixed convection parameter, the non-dimensional transpiration parameter and the curvature parameter, as well as of the Prandtl number. Dual solutions for the previously studied mixed convection boundary layer flows over an impermeable surface of the cylinder are shown to exist also in the present problem for aiding and opposing flow situations.
机译:本文对吹/喷和吸力对稳态混合对流或强制对流和自由对流结合边界层在垂直细长圆柱体上的主流流动速率和壁面温度成正比的影响进行了理论(数值)分析沿圆柱体表面的轴向距离。考虑了浮力的两种情况,它们都有助于并反对边界层的发展。推导了相似性方程,其求解取决于混合对流参数,无量纲蒸腾参数和曲率参数以及普朗特数。先前研究的混合对流边界层在圆柱体的不可渗透表面上流动的双重解决方案在本问题中也显示出存在,以帮助和对抗流动情况。

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