低雷诺数平板流动中DBD等离子体作动器强化传热的参数研究

IF 1.9 4区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Hesam Moayedi , Nima Amanifard , Hamed Mohaddes Deylami
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引用次数: 1

摘要

本研究旨在寻找介质阻挡放电(DBD)等离子体致动器的最佳配置,以提高低雷诺数下平板上气流的热工水力性能。进行了一系列参数研究,以确定主要贡献变量的影响;雷诺数、电压频率和DBD致动器的施加电压对传热的影响。本研究报告称,在等离子体驱动的情况下,增强因子(Num/Num0)达到约3.76。结果表明,降低雷诺数、提高DBD执行器的频率和施加电压可以提高增强因子。此外,引入了等离子体系统热效率(PSTE),以实现优化的电功率消耗和传热增强,作为增强因子对消耗电功率增加率的增加率。DBD致动器的频率和施加电压被用作设计变量,以找到最佳配置。基于雷诺数确定了DBD等离子体激励器的最佳功耗和配置。结果还表明,在存在低雷诺数外流的情况下,DBD等离子体致动器的Vapp=10.5kV和f=5kHz条件比其他配置更有利。这项研究的发现将有利于设计者开发高性能的传热。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Parametric study of DBD plasma actuator for heat transfer enhancement in flow over a flat plate at low Reynolds numbers

The present study intends to find the optimal configurations of Dielectric-Barrier-Discharge (DBD) plasma actuators to augment the thermo-hydraulic performance in air flow over a flat plate at low Reynolds numbers. A range of parametric studies are conducted to determine the impact of the major contributing variables; Reynolds number, voltage frequency, and the applied voltage of the DBD actuator, on the heat transfer. This study reports that in the presence of plasma actuation, the factor of enhancement (Num/Num0) achieves about 3.76. Results show that reducing the Reynolds number and raising the frequency and applied voltage of the DBD actuator improve the factor of enhancement. Furthermore, the plasma system thermal efficiency (PSTE) to achieve the optimized electric power consumption and heat transfer augmentation is introduced as the rate of increase of enhancement factor to the rate of increase of consumed electric power. The frequency and applied voltage for the DBD actuator are used as the design variables to find the optimum configurations. Optimum electric power consumption and configurations of DBD plasma actuator based on Reynolds number are determined. Results also show that Vapp = 10.5 kV and f = 5 kHz conditions for DBD plasma actuator is much beneficial than the other configurations in the presence of low Reynolds number external flow. This study's findings will benefit designers in developing high-performance heat transfer.

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来源期刊
Journal of Electrostatics
Journal of Electrostatics 工程技术-工程:电子与电气
CiteScore
4.00
自引率
11.10%
发文量
81
审稿时长
49 days
期刊介绍: The Journal of Electrostatics is the leading forum for publishing research findings that advance knowledge in the field of electrostatics. We invite submissions in the following areas: Electrostatic charge separation processes. Electrostatic manipulation of particles, droplets, and biological cells. Electrostatically driven or controlled fluid flow. Electrostatics in the gas phase.
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