Numerical investigation of single and multiple impinging synthetic jets on the flow field and heat transfer at low orifice-to-plate distances
-
Published:2023
Issue:3
Volume:51
Page:273-283
-
ISSN:1451-2092
-
Container-title:FME Transactions
-
language:en
-
Short-container-title:FME Transactions
Author:
Ergur Eda,Calisir Tamer
Abstract
In the present numerical study, the thermal performance and fluid flow properties have been investigated to show the effect of single-orifice and multiple-orifice impingement of synthetic jets for dimensionless orifice-toplate distance (H/D) of lower than one. Investigations have been done for an actuation frequency of f=500 Hz, 0.10 ≤ H/D ≤ 0.75, and dimensionless pitch ratio of 1.25 ≤ Do/D ≤ 1.75. The results were validated with experimental results from the literature, and a fair agreement was obtained. The results showed that at low nozzle-to-plate spacing, lower target plate temperatures could be obtained. It was observed that with the use of multiple orifices at especially higher Do/D higher heat transfer values are present. The study was performed to add knowledge to the electronics and aviation industries where high temperatures in small cavities occur.
Publisher
Centre for Evaluation in Education and Science (CEON/CEES)
Subject
Mechanical Engineering,Mechanics of Materials
Reference31 articles.
1. Yu, Q., Mei, Z., Bai, M., Xie, D., Ding, Y., Li, Y.: Cooling performance improvement of impingement hybrid synthetic jets in a confined space with the aid of a fluid diode, Applied Thermal Engineering, Vol. 157, pp. 113749, 2019; 2. Smith, B.L., Glezer, A.: The formation and evolution of synthetic jets, Physics of Fluids, Vol. 10, No. 9, pp. 2281-2297, 1998; 3. Ahmad, M., Qayoum, A.: Investigation of Impingement of Double Orifice Synthetic Jet for Heat and Fluid Flow Characteristics in Quiescent Flow, Pertanika J. Sci & Technol., Vol. 27, No. 3, pp. 1181-1206, 2019; 4. Singh, P.K., Renganathan, M., Yadav, H., Sahu, S.K., Upadhyay, P.K., Agrawal, A.: An experimental investigation of the flow-field and thermal characteristics of synthetic jet impingement with different waveforms, International Journal of Heat and Mass Transfer, Vol. 187, pp. 122534, 2022; 5. Elhefnawy, A., Elmaihy, A., Elweteedy, A.: A University Small Satellite Thermal Control Modeling and Analysis in the Post-Mission Phase, FME Transactions, Vol. 49, pp. 1014-1024, 2021;
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
|
|