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THE TWO-FLUX MODEL APPLIED TO RADIATIVE TRANSFER AND FORCED CONVECTION IN THE LAMINAR BOUNDARY LAYER ON A FLAT PLATE

机译:平板上的层边界层中的双通量模型应用于辐射转移和强制对流

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摘要

This study presents the analysis of the thermal boundary layer considering combined convection and radiation in an absorbing, emitting and scattering medium flowing over a fiat plate. At high temperatures the presence of thermal radiation alters the temperature distribution in the boundary layer, which in turn affects the heat transfer at the wall. In many industrial applications, such as in the cooling of turbine and compressors blades, radiative heat transfer plays an important role. The treatment of heat transfer by combined convection and radiation in the boundary layer leads to a set of partial differential and integrodifferential equations, which must be solved simultaneously. The exact solutions are seldom possible and the investigators resort to approximate methods. In the present analysis the two-flux model is used to describe the radiative heat flux in the energy equation. This model reduces the equations that govern the problem to a set of coupled partial differential equations. A finite difference scheme, called "method of columns", is used to transform the resulting equations into an ordinary differential equation system which simplifies the solution. Results for the temperature profile and heat fluxes showed close agreement with the thin and thick limits. The method proposed proves to be useful to investigate the effect of the different radiation parameters on the thermal boundary layer, and also to be accurate enough for engineering applications.
机译:本研究介绍了考虑到流动的吸收,发射和散射介质中的混合对流和辐射的热边界层的分析。在高温下,热辐射的存在改变了边界层中的温度分布,这又影响了墙壁处的传热。在许多工业应用中,如在冷却涡轮和压缩机叶片中,辐射传热起着重要作用。通过组合对流和边界层中的辐射进行传热的处理导致一组部分差分和积分的方程,必须同时解决。确切的解决方案很少可能和调查人员诉诸近似方法。在本分析中,双通量模型用于描述能量方程中的辐射热通量。该模型减少了对一组耦合的偏微分方程的问题的方程。一种称为“列方法”的有限差分方案,用于将所得方程转换为简化解决方案的常用方程系统。温度曲线和热通量的结果表明与薄厚度和厚度的限制相近。该方法提出了用于研究不同辐射参数对热边界层的影响,并且还准确地用于工程应用。

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