Influence of perforated triple twisted tape on thermal performance characteristics of a tube heat exchanger

被引:54
作者
Bhuiya, Muhammad Mostafa Kamal [1 ]
Roshid, Md Mamunur [1 ]
Talukder, Md Mehdi Masud [1 ]
Rasul, Mohammad Golam [2 ]
Das, Prasanjit [1 ]
机构
[1] CUET, Dept Mech Engn, Chittagong 4349, Bangladesh
[2] Cent Queensland Univ CQUniv, Sch Engn & Technol, Rockhampton, Qld 4701, Australia
关键词
PITT; Heat transfer; Friction loss; TEE; TRANSFER ENHANCEMENT; TURBULENT-FLOW; CIRCULAR TUBE; TURBULATOR; INSERTS; AUGMENTATION; TWIN;
D O I
10.1016/j.applthermaleng.2019.114769
中图分类号
O414.1 [热力学];
学科分类号
摘要
One of the challenging tasks in the development of heat exchangers is to select an appropriate geometry that will consume minimum energy. This could be achieved by designing a suitable enhancing device which will boost the thermal performance characteristics of heat exchangers. Twisted tape swirl generator, a heat transfer enhancement device equipped in a tube heat exchanger would induce turbulence and superimposed vortex motion causing a reduction in the hydrodynamic or thermal boundary layer thickness which results in the improvement of convective heat transfer. In this study, a new design of perforated triple twisted tape (PTTT) insert was applied as a swirl flow device with four different porosities (R-p) of 1.2, 4.6, 10.4 and 18.6% to enhance the convective heat transfer of a tube heat exchanger. The effects of porosity (R-p) of PTTT swirl generators on heat transfer, fluid friction and thermal performance characteristics of a tube heat exchanger were experimentally investigated. The experiments were conducted under constant heat flux condition using air as the working fluid in turbulent flow regime for variation in Reynolds number (Re) from 7250 to 49,800. The Nusselt number of the tube installed with PTTT inserts for porosity ranging from 1.2 to 18.6% was found to be 88-320% higher, whereas, the friction factor was achieved to be 112-355% higher in comparison to the plain tube. The highest heat transfer result of 320% was obtained at a porosity of 4.6% with PTTT insert compared to the smooth tube. Despite the significant enhancement in heat transfer, the friction factor was obtained to be 355% higher in comparison to the plain tube at a porosity of 4.6% with PTTT insert. The experimental results demonstrated that Nusselt number, friction factor, and thermal enhancement efficiency (TEE) were increased with decreasing the porosity of the tape inserts except for 1.2%. The heat transfer performance was evaluated based on constant blower power and the values were found to be 1.13-1.5 relative to the plain tube. The maximum TEE of 1.5 was achieved using PTTT insert with a porosity of 4.6%. Based on the experimental data, the empirical correlations of heat transfer, friction factor and TEE were developed in terms of R-p, Re and Prandtl number (Pr) to predict the heat transfer, friction factor and TEE. The optimal design of PTTTs based on the evaluation of thermal performance with suitable porosity could be an excellent heat transfer enhancement device for many industrial applications.
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页数:13
相关论文
共 45 条
[1]   Enhancement and Prediction of Heat Transfer Rate in Turbulent Flow Through Tube With Perforated Twisted Tape Inserts: A New Correlation [J].
Ahamed, J. U. ;
Wazed, M. A. ;
Ahmed, S. ;
Nukman, Y. ;
Ya, T. M. Y. S. Tuan ;
Sarkar, M. A. R. .
JOURNAL OF HEAT TRANSFER-TRANSACTIONS OF THE ASME, 2011, 133 (04)
[2]  
Ahmed JU, 2010, ENG E T, V5, P67
[3]  
Bhuiya M., 2012, INT COMMUN HEAT MASS
[4]   Heat transfer augmentation in a circular tube with perforated double counter twisted tape inserts [J].
Bhuiya, M. M. K. ;
Azad, A. K. ;
Chowdhury, M. S. U. ;
Saha, M. .
INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2016, 74 :18-26
[5]   Performance assessment in a heat exchanger tube fitted with double counter twisted tape inserts [J].
Bhuiya, M. M. K. ;
Sayem, A. S. M. ;
Islam, M. ;
Chowdhury, M. S. U. ;
Shahabuddin, M. .
INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2014, 50 :25-33
[6]   Thermal characteristics in a heat exchanger tube fitted with triple twisted tape inserts [J].
Bhuiya, M. M. K. ;
Chowdhury, M. S. U. ;
Shahabuddin, M. ;
Saha, M. ;
Memon, L. A. .
INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2013, 48 :124-132
[7]   Heat transfer and friction factor characteristics in turbulent flow through a tube fitted with perforated twisted tape inserts [J].
Bhuiya, M. M. K. ;
Chowdhury, M. S. U. ;
Saha, M. ;
Islam, M. T. .
INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2013, 46 :49-57
[8]   Heat transfer performance evaluation for turbulent flow through a tube with twisted wire brush inserts [J].
Bhuiya, M. M. K. ;
Chowdhury, M. S. U. ;
Islam, M. ;
Ahamed, J. U. ;
Khan, M. J. H. ;
Sarker, M. R. I. ;
Saha, M. .
INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2012, 39 (10) :1505-1512
[9]   Heat transfer enhancement and development of correlation for turbulent flow through a tube with triple helical tape inserts [J].
Bhuiya, M. M. K. ;
Ahamed, J. U. ;
Chowdhury, M. S. U. ;
Sarkar, M. A. R. ;
Salam, B. ;
Saidur, R. ;
Masjuki, H. H. ;
Kalam, M. A. .
INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2012, 39 (01) :94-101
[10]   Turbulent heat transfer and pressure drop in tube fitted with serrated twisted tape [J].
Chang, Shyy Woei ;
Jan, Yih Jena ;
Liou, Jin Shuen .
INTERNATIONAL JOURNAL OF THERMAL SCIENCES, 2007, 46 (05) :506-518