首页> 外文会议>ASME Proceedings of the National Heat Transfer Conference >A HEAT TRANSFER ANALYSIS OF LAMINAR FLOW OVER A FLAT PLATE WITH UNHEATED STARTING REGION FOR LOW PRANDTL NUMBER FLUIDS
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A HEAT TRANSFER ANALYSIS OF LAMINAR FLOW OVER A FLAT PLATE WITH UNHEATED STARTING REGION FOR LOW PRANDTL NUMBER FLUIDS

机译:用未加热的起始区域在平板上流动的传热分析,用于低普兰特数流体

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In boundary layer analyses involving heat transfer, the Prandtl number (Pr) relates the diffusion of momentum to the diffusion of heat, and can be shown to directly correlate to the ratio of the thermal boundary layer thickness to the velocity boundary layer thickness. For large Prandtl number fluids (i.e., Pr > 1) the velocity boundary layer thickness is larger than the thermal boundary layer thickness, and vice versa. In some applications in the industry heating does not occur over the entire plate, such as in the case of an unheated starting region or spot heating along a finite segment of the plate. For such applications solutions only exist for the simpler case of large Prandtl number fluids where the thermal boundary layer is assumed to be smaller than the velocity boundary layer. The analyses presented in this paper extends the solution to the unheated starting region problem for small Prandtl number fluids, where the thermal boundary layer grows larger and crosses the velocity boundary layer. The solution is based on the integral method approach assuming laminar flow, and both cases of constant wall temperature as well as constant wall heat flux are analyzed.
机译:在涉及传热的边界层分析中,PRANDTL号(PR)将动量扩散与热量的扩散相关,并且可以示出直接与热边界层厚度与速度边界层厚度的比率直接相关。对于大的Prandtl数流体(即Pr> 1),速度边界层厚度大于热边界层厚度,反之亦然。在某些应用中,在行业中的应用中不会发生在整个板上,例如在未加热的起始区域或沿着板的有限区段加热的情况下的情况。对于这种应用,仅存在用于较简单的普朗特数流体的更简单的情况,其中假设热边界层小于速度边界层。本文所示的分析将解决方案延伸到未加热的起始区域问题,用于小普朗特数流体,其中热边界层的增大并穿过速度边界层。该解决方案基于假设层流的积分方法方法,分析了两种恒定壁温以及恒定壁热通量的情况。

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