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Experimental Analysis of different shaped ribs on heat transfer and fluid flow characteristics

机译:不同形状肋对传热和流体流动特性的实验分析

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There are number of applications such as gas turbines, solar air heating, electronics cooling and heat exchangers, where internal cooling passage is observed. For heat transfer augmentation inside these cooling passages different techniques are used like dimpled surface, wings and ribs. Ribs are used in most of the devices for internal cooling. The ribs disturb the boundary layer and increase the turbulent kinetic energy which enhances the heat transfer rate. Most of the researchers concentrate on square and rectangular shaped ribs. The cross section of the rib plays important role in the production of flow field. The shape of ribs affects on boundary layer separation, attachment and hot spots created. In the present paper heat transfer and fluid flow characteristics from rib roughened rectangular duct with different shapes of ribs were investigated. The experimental set up consists of rectangular channel of aspect ratio 4. The pitch to width ratio was varied as 5, 7.5 and 10 respectively. The Reynolds number was varied as 6000 to 30000. The ribs used for the investigations were square, house and boot shaped. From the investigations it is observed that boot shaped rib is having higher thermal performance than other two geometries
机译:存在诸如燃气轮机,太阳能空气加热,电子冷却和热交换器等应用,其中观察到内部冷却通道。对于这些冷却通道内的传热增强,使用不同的技术,如凹陷的表面,翅膀和肋。用于内部冷却的大部分器件中使用肋骨。肋条干扰边界层并增加湍流动能,这提高了传热速率。大多数研究人员专注于方形和矩形肋骨。肋骨的横截面在流场的生产中起着重要作用。肋骨的形状会影响边界层分离,附着和产生的热点。在本发明的纸张中,研究了来自肋骨粗糙的矩形管道,具有不同形状的肋骨的矩形。实验组由宽高比4的矩形通道组成。间距分别为5,7.5和10。雷诺数为6000至30000。用于调查的肋骨是正方形,房屋和靴子。从调查中,观察到的是,靴子形肋具有比其他两个几何形状更高的热性能

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