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首页> 外文期刊>International Journal of Heat and Mass Transfer >A numerical study of flow and heat transfer in internally finned rotating straight pipes and stationary curved pipes
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A numerical study of flow and heat transfer in internally finned rotating straight pipes and stationary curved pipes

机译:内翅旋转直管和固定弯管内流动和传热的数值研究

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摘要

In this article the effects of internal fins on laminar incompressible fluid flow and heat transfer inside rotating straight pipes and stationary curved pipes are numerically studied under hydrodynamically and thermally fully developed conditions. The fins are assumed to have negligible thickness with the same conditions as the pipe walls. Two cases, constant wall temperature and constant heat flux at the wall, are considered. First the accuracy of the numerical code written by a finite volume method based on SIMPLE algorithm is verified by the available data for the finless rotating straight pipes and stationary curved pipes, and then, the numerical results for those internally finned pipes are investigated in detail. The numerical results for different sizes and numbers of internal fins indicate that the flow and temperature field analogy between internally finned rotating straight pipes and stationary curved pipes still prevail. The effects of Dean number (K_L) versus friction factor, Nusselt number, and other non-dimensional parameters are studied in detail. From the numerical results obtained, an optimum fin height about 0.8 of pipe radius is determined for Dean numbers less than 100. At this optimum value, the heat transfer enhancement is maximum, and the heat transfer coefficient appears to be 6 times as that of corresponding finless pipes.
机译:在本文中,在流体动力和热充分发展的条件下,数值研究了内部翅片对旋转直管和固定弯管内层状不可压缩流体流动和传热的影响。假定在与管壁相同的条件下,散热片的厚度可以忽略不计。考虑了两种情况,恒定的壁温和恒定的壁热通量。首先,利用现有的无翅旋转直管和固定弯管的数据,验证了基于SIMPLE算法的有限体积法编写的数字编码的准确性,然后详细研究了内部翅片管的数值结果。不同尺寸和数量的内部翅片的数值结果表明,内部翅片式旋转直管与固定弯曲管之间的流场和温度场类比仍然占主导地位。详细研究了迪安数(K_L)对摩擦系数,努塞尔数和其他无量纲参数的影响。根据获得的数值结果,确定Dean数小于100的最佳翅片高度为管半径的0.8。在此最佳值下,传热增强最大,传热系数似乎是相应传热系数的6倍。无翅管。

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