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Enhanced Forced Convection Heat Transfer From a Cylinder Using Permeable Fins

机译:使用渗透性翅片增强了气缸的强制对流换热

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The problem of cross-flow forced convection heat transfer from a horizontal cylinder with multiple, equally spaced, high conductivity permeable fins on its outer surface was investigated numerically. The heat transfer characteristics of a cylinder with permeable versus solid fins were studied for several combinations of number of fins and fin height over the range of Reynolds number (5-200). Permeable fins provided much higher heat transfer rates compared to the more traditional solid fins for a similar cylinder configuration. The ratio between the permeable to solid Nusselt numbers increased with Reynolds number and fin height but tended to decrease with number of fins. This ratio was as high as 4.35 at Reynolds number of 150 and a single fin with a nondimensional height of 3.0. The use of 1-2 permeable fins resulted in much higher Nusselt number values than when using up to 18 solid fins. Such an arrangement has other benefits such as a considerable reduction in weight and cost.
机译:数值研究了一个水平圆柱体的横流强制对流换热问题,该圆柱体的外表面上有多个等距的高电导率可渗透散热片。研究了雷诺数(5-20​​0)范围内翅片数量和翅片高度的几种组合,研究了具有可渗透翅片与实心翅片的圆柱体的传热特性。与类似的圆柱体配置相比,传统鳍片相比,渗透鳍片提供更高的传热速率。渗透性与固体Nusselt数之间的比率随雷诺数和翅片高度的增加而增加,但随着翅片数的增加而趋于减小。在雷诺数为150的情况下,该比例高达4.35,无翅片高度为3.0。与使用多达18个固体鳍片相比,使用1-2个可渗透鳍片会产生更高的Nusselt值。这样的布置具有其他优点,例如大大减少了重量和成本。

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