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Experimental study of conjugate heat transfer within a bottom heated vertical concentric cylindrical enclosure

机译:底部加热垂直同心圆柱外壳内共轭传热的实验研究

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In this research work an experimental study of conjugate heat transfer within an air filled bottom-heated vertical enclosure is conducted. The enclosure consists of two concentric cylinders with inner cylinder being shorter and open at the top. The study is important with respect to the centrifuge machine used in the process industry. Eighteen different experiments are performed by varying the bottom disc central temperature between 353 and 433 K, using three different materials (aluminum, mild steel and stainless steel) of the inner cylinder and two different diameter outer cylinders of mild steel. This study unfolds the temperature, material and geometric effects of bottom disc, inner cylinder and outer cylinder respectively on thermal convection in the enclosure. Generally, a uniform temperature is required in such enclosures. A more uniform axial and radial temperature is observed in the enclosure by using aluminum inner cylinder within a temperature range of 353-433 K of the bottom disc and using two different diameter outer cylinders. It is observed that the maximum temperature in the enclosure is lowest for aluminum inner cylinder and higher for mild steel and highest for stainless steel. The heat balance and non-dimensional analysis of the enclosure are carried out and discussed critically.
机译:在这项研究工作中,对充满空气的底部加热的垂直外壳内的共轭传热进行了实验研究。外壳由两个同心圆柱体组成,内部圆柱体较短,顶部开口。对于过程工业中使用的离心机,这项研究很重要。通过使用三种不同材料(铝,低碳钢和不锈钢)的内筒和两种不同直径的低碳钢外筒,通过在353和433 K之间在353和433 K之间改变底盘中心温度来进行18个不同的实验。这项研究揭示了底部圆盘,内圆柱和外圆柱分别对外壳中的热对流的温度,材料和几何效应。通常,在这种外壳中需要均匀的温度。通过在底部圆盘的353-433 K的温度范围内使用铝制内圆筒并使用两个不同直径的外圆筒,可以在外壳中观察到更均匀的轴向和径向温度。可以看出,外壳的最高温度对于铝制内缸最低,对于低碳钢则最高,对于不锈钢最高。对外壳的热平衡和无因次分析进行了严格的讨论。

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