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Natural Convection around Horizontal Tubes with Smooth, Rough, and Machined Surfaces

机译:具有光滑,粗糙和机加工表面的水平管周围的自然对流

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This study concerns natural convection around horizontal tubes with smooth, rough, and machined surfaces. The study is motivated by the need for understanding the machining effect or the use of a rough surface layer on the natural convection process. An experimental system is constructed that includes a thick wall metal tube equipped with thermocouples for measuring the surface temperature. A heating element is inserted inside the tube and is coupled with a power supply that can be adjusted to achieve surface temperatures of 60-160℃. The tube surface is machined at various depths of 1-3 mm. Also, four grades of sandpaper are used to cover the tube surface. An analysis of measured data is based on variations in the Nusselt number as a function of the Rayleigh number and surface condition. Results show that the measured data for the smooth tube are consistent with literature results. Although surface machining increases the heat transfer area, it lowers the heat transfer rate because of the low thermal conductivity of air, which replaces the removed metal in the machined grooves. Similarly, covering the tube surface with sandpaper reduces the rate of heat transfer from the tube surface because of contact resistance and the thermal resistance of the sandpaper. Data analysis that takes into consideration the above resistances, where the contact and sandpaper thermal resistances are eliminated, show enhancement of up to 30%. This implies that the direct roughening of a metal surface would enhance the heat transfer rate by 30%.
机译:这项研究涉及具有光滑,粗糙和机加工表面的水平管周围的自然对流。该研究的动机是需要了解机加工效果或在自然对流过程中使用粗糙的表面层。构建了一个包括厚壁金属管的实验系统,该金属管配有用于测量表面温度的热电偶。加热元件插入管内,并与可调节的电源耦合,以达到60-160℃的表面温度。管表面的加工深度为1-3毫米。另外,四级砂纸用于覆盖管子表面。对测量数据的分析基于纳塞尔数随瑞利数和表面条件的变化。结果表明,光滑管的测量数据与文献结果一致。尽管表面加工会增加传热面积,但由于空气的低导热性会降低传热速率,从而替代了加工槽中去除的金属。类似地,由于砂纸的接触电阻和热阻,用砂纸覆盖管表面降低了从管表面传热的速率。考虑到上述电阻的数据分析(消除了接触电阻和砂纸的热阻)显示提高了30%。这意味着金属表面的直接粗糙化将使传热率提高30%。

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