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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Combined convection heat transfer for thermally developing aiding flow in an inclined circular cylinder with constant heat flux
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Combined convection heat transfer for thermally developing aiding flow in an inclined circular cylinder with constant heat flux

机译:结合对流传热,以恒定热通量在倾斜的圆柱体中热发展辅助流动

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Experiments have been conducted to study the local and average heat transfer by mixed convection for hydrodynamically fully developed, thermally developing and thermally fully developed laminar air flow in an inclined circular cylinder. The experimental setup consists of aluminum cylinder as test section with 30 mm inside diameter and 900 mm heated length (L/D = 30), is subjected to a constant wall heat flux boundary condition. The investigation covers Reynolds number range from 400 to 1600, heat flux is varied from 70 W/m{sup}2 to 400 W/m{sup}2 and cylinder angles of inclination including 30°, 45° and 60°" The hydrodynamically fully developed condition has been achieved by using aluminum entrance section pipes (calming sections) having the same inside diameter as test section pipe but with variable lengths. The entrance sections included two long calming sections, one with length of 180 cm (L/D = 60), another one with length of 240 cm (L/D = 80) and two short calming sections with lengths of 60 cm (L/D = 20), 120 cm (L/D = 40). The results present the surface temperature distribution along the cylinder length, the local and average Nusselt number distribution with the dimensionless axial distance Z{sup}+. For all entrance sections, the results showed an increase in the Nusselt number values as the heat flux increases and as the angle of cylinder inclination moves from θ = 60° inclined cylinder to θ = 0° horizontal cylinder. The mixed convection regime has been bounded by the convenient selection of Re number range and the heat flux range, so that the obtained Richardson numbers (Ri) is varied approximately from 0.13 to 7.125. The average Nusselt numbers have been correlated with the (Rayleigh numbers/Reynolds numbers) in empirical correlations.
机译:已经进行了实验以研究通过混合对流的局部和平均传热,以用于在倾斜的圆筒中进行流体动力学充分展开,热展开和热充分展开的层流。实验装置由铝制圆柱体作为测试部分组成,该圆柱体的内径为30 mm,加热长度为900 mm(L / D = 30),并经受恒定的壁热通量边界条件。研究范围涵盖雷诺数范围从400到1600,热通量从70 W / m {sup} 2到400 W / m {sup} 2不等,圆柱倾角包括30°,45°和60°”通过使用内径与测试段管相同但长度可变的铝制入口段管(定标段),可以达到充分发展的条件,入口段包括两个长的平静段,一个长度为180厘米(L / D = 60),另一个长度为240厘米(L / D = 80),两个短的平静区域,长度为60 cm(L / D = 20),长度为120 cm(L / D = 40)。沿汽缸长度的温度分布,局部和平均努塞尔数分布以及无因次轴向距离Z {sup} +。对于所有入口部分,结果表明,随着热通量的增加和角度的变化,努塞尔数值也随之增加。圆柱倾斜度从θ= 60°倾斜圆柱移动到θ= 0°水平带状圆柱体。混合对流方式受到Re数范围和热通量范围的方便选择的限制,因此获得的Richardson数(Ri)大约在0.13到7.125之间变化。在经验相关中,平均努塞尔数已与(瑞利数/雷诺数)相关。

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