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Experimental Study of Heat Transfer Enhancement by Inserting Metal Chain in Heat Exchanger Tube.

机译:换热器管中的金属链加热增强试验研究。

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Heat transfer augmentation in heat exchangers is important in many large industrial applications and many studies have been conducted on this subject. In this paper, an experimental study was used to verify the increased heat transfer of a circular heat exchanger tube with the insertion of metal chains, under turbulent flow conditions. A rig was designed and fabricated to investigate the effects of using the metal chain as rurbulators inside the heat exchanger pipe, on heat transfer performance and on fluid flow behavior. The metal chains used were of different lengths of chain ring and different diameters of ring wire. Five ring length/tube diameter ratios (P/D) were used, (1, 2, 3, 4 and 5). Two wire diameter /tube diameter ratios (t/D) were used in this work (0.1 and 0.15). Heavy fuel oil (HFO) was used inside the tube, flowing at 30 °C with uniform tube wall temperature. The Reynolds numbers tested were between 5,000 and 15,000. The results showed the thermal enhancement factor (η) decreased with increasing Reynolds number for all cases, depending on lengths of chain ring (P) and thickness the weir chain (t) values. A maximum thermal enhancement factor (η) was found with a metal chain at P/D=3 and t/D= 0.15. The results also show that P/D=1 and t= 4mm, give the highest Nusselt number.
机译:热交换器中的传热增强在许多大型工业应用中是重要的,并且在这一主题上进行了许多研究。在本文中,在湍流条件下,使用实验研究验证圆形热交换器管随着金属链的插入而增加的圆形热交换器的传热。设计和制造钻机,以研究使用金属链作为热交换器管道内的Rurnumators的效果,在传热性能和流体流动行为上。所用的金属链具有不同的链环和不同的环线直径。使用五个环长/管直径比(P / D),(1,2,3,4和5)。在该工作中使用两个线径/管直径比(T / D)(0.1和0.15)。在管内使用重型燃料油(HFO),在30°C下流动,管壁温度均匀。测试的雷诺数在5,000到15,000之间。结果表明,由于链环(P)的长度和堰链(T)值的长度,随着所有情况的雷诺数增加,热增强因子(η)随着雷诺数而降低。在P / D = 3的金属链和T / D = 0.15处发现最大热增强因子(η)。结果还表明,P / D = 1和T = 4mm,给出了最高的营养数。

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