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Fully developed heat transfer in mini scale coiled tubing for constant wall temperature

机译:在小型连续油管中充分开发出传热功能,可保持恒定的壁温

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An experimental study on heat transfer enhancement in mini scale coiled tubing for constant wall temperature conditions is conducted. Copper coils with three different radii of curvature (1 cm, 2 cm, and 4 cm), and in four lengths (1, 2, 3 and 4 coil turns) were used. The tube length is long enough to consider the flow to be hydro-dynamically fully developed. Hence, the effects of varying curvatures and lengths on heat transfer are studied. The pitch of the coil is restricted to diameter of the tube to minimize the effect of coiling. Dean number is used instead of Coiled number (modified Dean number), and hence, the results can be expanded to spiral and curved tubing. Water and two different silicone oils (0.65 cSt, 1 cSt) were used in the experiments to examine the effect of Prandtl number on coiled tubing heat transfer augmentation. Prandtl number from 5 to 15 is covered in this paper. A new asymptotic correlation is proposed to calculate Nusselt number in fully developed coiled tubing based on the current results. In addition, dimensionless mean wall flux and dimensionless thermal length are also considered besides Nusselt, Reynolds, and Dean numbers.
机译:在恒定壁温条件下,进行了小型连续油管传热增强的实验研究。使用具有三个不同曲率半径(1 cm,2 cm和4 cm)并且具有四个长度(1、2、3和4个线圈匝)的铜线圈。管的长度足够长,可以考虑流体动力学地充分展开。因此,研究了曲率和长度变化对传热的影响。线圈的螺距限制在管子的直径上,以最大程度地减小线圈缠绕的影响。使用迪安数代替盘绕数(修改后的迪恩数),因此可以将结果扩展到螺旋管和弯曲管。在实验中使用水和两种不同的硅油(0.65 cSt,1 cSt)检查普朗特数对连续油管传热增加的影响。本文涵盖从5到15的Prandtl数。根据当前结果,提出了一种新的渐近相关性来计算完全开发的连续油管中的努塞尔数。此外,除Nusselt,Reynolds和Dean数外,还应考虑无量纲的平均壁通量和无因次的热长度。

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