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基于新型丝状电极等离子体激励器的前体涡控制

高超 倪章松 薛明 郑博睿

空气动力学学报2021,Vol.39Issue(2):39-52,14.
空气动力学学报2021,Vol.39Issue(2):39-52,14.DOI:10.7638/kqdlxxb-2020.0116

基于新型丝状电极等离子体激励器的前体涡控制

Forebody vortex control with a wire-based DBD plasma actuator

高超 1倪章松 1薛明 1郑博睿2

作者信息

  • 1. 西北工业大学 航空学院,西安 710071
  • 2. 西安理工大学 自动化与信息工程学院,西安 710048
  • 折叠

摘要

Abstract

Forebody vortex control with a novel wire-based DBD (Dielectric Barrier Discharge) plasma actuator is studied by wind tunnel experiments in the present work. The configuration of the wire-based DBD plasma actuator, including the material and diameter of the exposed electrode, is optimized through thrust measurements in quiescent air. The results show that the DBD plasma actuator with a wire-based exposed electrode made from tungsten has the highest thrust efficiency, and with the reduction of the diameter from d = 0.3 mm to d = 0.08 mm, the thrust efficiency can be greatly improved. The optimal configuration of the wire-based DBD plasma actuator is used for the forebody vortex control through wind tunnel experiments. When the plasma control is not applied, results of the pressure and PIV measurements indicate that the flow field in the leeward zone is a distinct asymmetric vortex structure. Under plasma actuation, the asymmetric vortex structure can be symmetrical or even mirror asymmetric with respect to the case "plasma off", and the control ability in the burst-mode actuation can be significantly improved compared to the steady operation. It is found that the forebody vortex control effect depends on the vortex structure of "plasma off", which can be either symmetric or asymmetric. This study presents a new approach for the forebody vortex control with the wire-based DBD plasma actuator, which can further improve the aerodynamic flow control on aircrafts with slender bodies.

关键词

前体涡/丝状电极DBD/等离子体流动控制/非对称涡

Key words

forebody vortex/wire-based DBD/plasma flow control/asymmetric vortices

分类

数理科学

引用本文复制引用

高超,倪章松,薛明,郑博睿..基于新型丝状电极等离子体激励器的前体涡控制[J].空气动力学学报,2021,39(2):39-52,14.

基金项目

国家自然科学基金(11572256) (11572256)

空气动力学学报

OA北大核心CSCDCSTPCD

0258-1825

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