Experimental and Numerical Study of Multiple Jets Impinging a Step Surface

被引:6
作者
Barbosa, Flavia, V [1 ]
Teixeira, Senhorinha F. C. F. [2 ]
Teixeira, Jose C. F. [1 ]
机构
[1] Univ Minho, MEtRICs I&D Ctr, Sch Engn, P-4800058 Guimaraes, Portugal
[2] Univ Minho, Sch Engn, ALGORITMI I&D Ctr, P-4800058 Guimaraes, Portugal
关键词
computational fluid dynamics; flow dynamics; heat transfer; jet impingement; particle image velocimetry; TRANSIENT HEAT-TRANSFER; SMALL-SCALE; FLOW-FIELD; IMPINGEMENT; ARRAYS; PLATE; FLAT; PERFORMANCE; SIMULATION;
D O I
10.3390/en14206659
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
Multiple jet impingement is a widely implemented convective process for enhancing heat transfer over target surfaces. Depending on the engineering application, the impinging plate can have different configurations. However, the increased complexity of the surface induces complicated thermal behaviors that must be analyzed. In that sense, this study consisted of the experimental and numerical analysis of multiple jets impinging on a step surface. A particle image velocimetry technique was applied to measure velocity fields, while a heat flux sensor was mounted on the surface to determine the heat transfer. Numerical simulations, for both flat and non-flat plates, were conducted in ANSYS FLUENT applying the SST k-omega model, and experimental results were used to validate the model. Three surface configurations were analyzed, flat, 1 D, and 2 D steps, and the results show an increase in the average Nusselt number compared with the flat plate, 9% and 20%, respectively. This increase was mainly due to the intensification of the flow turbulence induced by the step. Numerical results were in good agreement with the experiments, but the heat transfer was slightly underpredicted for the 2 D step case due to the difficulty of predicting with accuracy the velocity field near the step.
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页数:23
相关论文
共 63 条
[1]   Flow Structure and Heat Transfer of Jet Impingement on a Rib-Roughened Flat Plate [J].
Alenezi, Abdulrahman H. ;
Almutairi, Abdulrahman ;
Alhajeri, Hamad M. ;
Addali, Abdulmajid ;
Gamil, Abdelaziz A. A. .
ENERGIES, 2018, 11 (06)
[2]   Simultaneous visualization of flow field and evaluation of local heat transfer by transitional impinging jets [J].
Angioletti, M ;
Di Tommaso, RM ;
Nino, E ;
Ruocco, G .
INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2003, 46 (10) :1703-1713
[3]  
ANSYS, 2019, ANSYS FLUENT THEOR G
[4]  
ASME, 1998, Test Uncertainty. Instruments and Appartus
[5]   Thin-Film Heat Flux Sensor for Measuring the Film Coefficient of Rubber Components of a Rolling Tire [J].
Assaad, M. C. ;
Kimble, B. ;
Huang, Y-M ;
Burgan, R. ;
Fralick, G. C. ;
Wrbanek, J. D. ;
Gonzalez, J. M. .
TIRE SCIENCE AND TECHNOLOGY, 2008, 36 (04) :275-289
[6]   Enhanced Transient Heat Transfer From Arrays of Jets Impinging on a Moving Plate [J].
Badra, Jihad ;
Masri, Assaad R. ;
Behnia, Masud .
HEAT TRANSFER ENGINEERING, 2013, 34 (04) :361-371
[7]   Experimental and numerical analysis of the influence of the nozzle-to-plate distance in a jet impingement process [J].
Barbosa, F., V ;
Teixeira, S. F. C. F. ;
Teixeira, J. C. F. .
INTERNATIONAL JOURNAL OF THERMODYNAMICS, 2020, 23 (02) :81-91
[8]  
Barbosa F.V., 2019, T ENG TECHNOLOGIES W
[9]   Measurement Errors and Uncertainty Quantification of a Two-Dimensional-Particle Image Velocimetry Experimental Setup for Jet Flow Characterization [J].
Barbosa, Flavia, V ;
Costa, Carlos A. P. ;
Teixeira, Senhorinha F. C. F. ;
Teixeira, Jose C. F. .
ASCE-ASME JOURNAL OF RISK AND UNCERTAINTY IN ENGINEERING SYSTEMS PART B-MECHANICAL ENGINEERING, 2020, 6 (04)
[10]   Parametric analysis of a round jet impingement on a heated plate [J].
Ben Kalifa, Rim ;
Habli, Sabra ;
Said, Nejla Mahjoub ;
Bournot, Herve ;
Le Palec, Georges .
INTERNATIONAL JOURNAL OF HEAT AND FLUID FLOW, 2016, 57 :11-23