Experimental and Numerical Simulation of the Heat Transfer Enhancement on the Twin Impingement Jet Mechanism

被引:6
作者
Abdullah, Mahir Faris [1 ]
Zulkifli, Rozli [1 ]
Harun, Zambri [1 ]
Abdullah, Shahrir [1 ]
Ghopa, Wan Aizon Wan [1 ]
机构
[1] Univ Kebangsaan Malaysia, Dept Mech & Mat Engn, Bangi 43600, Selangor, Malaysia
关键词
numerical simulation; FLUENT; impingement jet; twin jets; heat transfer; IMPINGING JETS; FLOW; SURFACE; DESIGN; ARRAY;
D O I
10.3390/en11040927
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
This article presents a study which sought to enhance heat transfer by employing a twin jet impingement mechanism (TJIM) and investigating the impact of the distance between the nozzles and plate on the Nusselt number (Nu) and heat transfer coefficient. This investigation was additionally based on the measurements of the heat flux temperature micro foil sensor and IR thermal imaging. A computational study of the cooling heated plate, through simulating the electronic components by the TJIM, was investigated using the RNG k-epsilon turbulence model. The jet-plate position was changed at the different jet-to-plate distances S = 1, 6, and 11 cm, Reynolds number = 17,000. The main flow structure, the static pressure, local and average Nus and heat transfer coefficient, were also examined. The findings have yielded new information about TJIM, and represent a new contribution about the flow and heat transfer characteristics of TJIM, and means of improving the rate of heat transfer in the passive heat transfer technique. The results of the various positions of the TJIM determined that the first model is, in fact, the best model for the heat transfer coefficient and the highest Nu, when S = 1 cm and H = 1 cm. Furthermore, the irregular distribution of the local Nu and the local heat transfer coefficient (h) on the impinged surface are due to the increase or decrease in the turbulence of flow on the measured surface.
引用
收藏
页数:21
相关论文
共 30 条
[1]   Numerical and experimental study of turbulent impinging twin-jet flow [J].
Abdel-Fattah, A. .
EXPERIMENTAL THERMAL AND FLUID SCIENCE, 2007, 31 (08) :1061-1072
[2]  
Abdullah M.F., 2017, INT J MECH MECHATRON, V17, P16
[3]  
Abdullah M.F., 2017, INT J MECH MECHATRON, V17, P60
[4]  
[Anonymous], 2009, PROGR TUT GUID
[5]  
[Anonymous], 2007, Introduction to Heat Transfer
[6]  
Bejan A., 2003, Heat transfer handbook, V1
[7]  
Bergman T.L., 2011, Introduction to Heat Transfer, DOI DOI 10.1016/J.APPLTHERMALENG.2011.03.022
[8]   Jet impingement heat transfer on a concave surface in a wing leading edge: Experimental study and correlation development [J].
Bu, Xueqin ;
Peng, Long ;
Lin, Guiping ;
Bai, Lizhan ;
Wen, Dongsheng .
EXPERIMENTAL THERMAL AND FLUID SCIENCE, 2016, 78 :199-207
[9]   The influence of nozzle-to-plate spacing on heat transfer and fluid flow of submerged jet impingement [J].
Choo, Kyosung ;
Friedrich, Brian K. ;
Glaspell, Aspen W. ;
Schilling, Karen A. .
INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2016, 97 :66-69
[10]   Large Eddy Simulation of multiple impinging jets in hexagonal configuration - Flow dynamics and heat transfer characteristics [J].
Draksler, Martin ;
Koncar, Bostjan ;
Cizelj, Leon ;
Niceno, Bojan .
INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2017, 109 :16-27