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首页> 外文期刊>Journal of Thermal Science and Engineering Applications: Transactions of the ASME >Heat Transfer-Friction Factor and Correlations for Wavy Porous Screens as Inserts in Channel Thermal Performance
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Heat Transfer-Friction Factor and Correlations for Wavy Porous Screens as Inserts in Channel Thermal Performance

机译:波浪多孔屏幕的传热摩擦因子和相关性作为渠道热性能的插入

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摘要

Structural inserts are employed to enhance the heat transfer in channel flow with the expense of thermal performance. The present investigation employs the wavy porous screens as inserts in an air channel and measures the pressure drop and heat transfer along the channel. The wave vectors are parallel to the flow and in point contact at the tips with the channel walls. The pores in the insert generate turbulence to enhance the heat transfer from the channel walls with a moderate pressure penalty because of the low blockage ratio. The objectives are to investigate the effects of wavelength (lambda), porosity (xi), and height (H) of the sinusoidal wave of the insert as well as the Reynolds number (Re) on the friction factors (f) and Nusselt numbers (Nu). Twelve inserts are formed from the flat metal mesh screens for testing between the Reynolds number (Re) of 400 and 35,000. The results of (f, Nu) and smooth channel-based enhancements (f/f(0), Nu/Nu(0)) are affected the most by Re followed by lambda and then xi. The values of both (f/f(0), Nu/Nu(0)) increase significantly as the Reynolds number increases in Re < 3000. However, both the (f/f(0), Nu/Nu(0)) decrease little as both the (, xi) increase at all Re. The performance factor index, (Nu/Nu(0))/(f/f(0))((1/3)) > 1.0 irrespective of (lambda, xi, H) only when Re is about 3000. The correlations developed for the f, Nu, and performance factor provide reasonable predictions of the experimental results.
机译:采用结构插入物以增强通道流动的热传递,以牺牲热性能为代价。本研究采用波状多孔屏幕作为空气通道中的插入物,并测量沿通道的压降和热传递。波矢量平行于流动和沟道壁的尖端的流动和点接触。插入件中的孔产生湍流以增强来自沟道壁的热传递,由于低阻塞比,中等压力损失。目的是研究波长(Lambda),孔隙率(XI)和刀片波的孔隙(XI)和高度(H)的影响以及摩擦因子(F)和纽带数( nu)。从扁平金属网屏幕形成十二个插入物,用于在400和35,000的雷诺数(RE)之间进行测试。 (f,nu)和基于平滑的通道增强的结果(f / f(0),nu / nu(0))受到重复的影响,然后是lambda,然后是xi。 (f / f(0),nu / nu(0))的值显着增加,因为Re <3000中的雷诺数增加。但是,(f / f(0),nu / nu(0))随着( 1.0,而不是仅在RE约3000时才有对于F,Nu和性能因子提供了实验结果的合理预测。

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