波纹管与不同数量泡沫铜圆柱插片在层流中的传热与压降比较

IF 2.8 Q2 THERMODYNAMICS
Heat Transfer Pub Date : 2024-10-17 DOI:10.1002/htj.23209
Ayser Muneer Flayh
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引用次数: 0

摘要

本文的主要目的是通过实验研究一种新型的波纹管的水力和热工性能,该波纹管采用了一种新型的泡沫铜圆柱插片(MFCIs)来改善传热过程,在相同的操作条件下,这种插片比光滑管具有更高的热增强系数。本文还以水为试验流体,采用推荐的雷诺数范围为1600 ~ 4000的MFCI作为双热交换器,研究了金属泡沫(10 PPI,孔隙率为0.9)圆柱插片数对Nusselt数和Nusselt数比的影响。研究结果表明,与光滑管相比,具有MFCI的波纹管的传热和热性能得到了显著增强。此外,在测试范围内,传热值的平均上升在225%和400%之间,这取决于圆柱形插片的数量和雷诺数,而在低雷诺数(1820)下,使用具有(四个)圆柱形插片的波纹管,获得的最大热性能约为2.4。此外,压力损失结果表明,波纹管的平均摩擦系数比光滑管高96% ~ 97%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Heat transfer and pressure drop comparison for corrugated tube and different numbers of copper foam cylindrical inserts in laminar flow

The chief objective of the present investigation is to study experimentally the hydraulic and thermal performance of a corrugated tube with copper foam cylindrical inserts (MFCIs) containing a new type of inserts with the purpose to improve the procedure of heat transfer, which gives an elevated thermal enhancement factor more than that of smooth tube beneath the similar operating circumstances. Also, in this paper, the study of the effect on the number of cylindrical inserts was made from metal foam (10 PPI and porosity 0.9) on the Nusselt number and Nusselt number ratio as a double heat exchanger furnished with the suggested MFCI with various values of Reynolds numbers ranges from 1600 to 4000 via using water as the test fluid. The investigational outcomes revealed an enhancement in heat transfer as well as the thermal performance of the corrugated tube with MFCI, which being significantly augmented in comparison to those for the smooth tube. Additionally, the average rise in the value of heat transfer is within 225% and 400% at the test range, relying upon the number of cylindrical inserts as well as the Reynolds number, whereas the maximum thermal performance is obtained to be around 2.4 for utilizing the corrugated tube having (four) cylindrical inserts at low Reynolds number (1820). Furthermore, the outcome of the loss of pressure manifested that the corrugated tube's mean friction factor is between 96% and 97% more than the smooth tube.

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来源期刊
Heat Transfer
Heat Transfer THERMODYNAMICS-
CiteScore
6.30
自引率
19.40%
发文量
342
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