等离子体驱动器
气流
稳健性(进化)
航空航天工程
热的
等离子体
风洞
执行机构
流量控制(数据)
离子风
环境科学
汽车工程
机械工程
计算机科学
工程类
气象学
电气工程
物理
介质阻挡放电
电信
量子力学
生物化学
化学
电极
基因
标识
DOI:10.1088/0022-3727/40/3/s01
摘要
Active flow control is a topic in full expansion due to associated industrial applications of huge importance, particularly for aeronautics. Among all flow control methods, such as the use of mechanical flaps, wall synthetic jets or MEMS, plasma-based devices are very promising. The main advantages of such systems are their robustness, simplicity, low power consumption and ability for real-time control at high frequency. This paper is a review of the worldwide works on this topic, from its origin to the present. It is divided into two main parts. The first one is dedicated to the recent knowledge concerning the electric wind induced by surface non-thermal plasma actuators, acting in air at atmospheric pressure. Typically, it can reach 8 m s−1 at a distance of 0.5 mm from the wall. In the second part, works concerning active airflow control by these plasma actuators are presented. Very efficient results have been obtained for low-velocity subsonic airflows (typically U∞ ≤ 30 m s−1 and Reynolds number of a few 105), and promising results at higher velocities indicate that plasma actuators could be used in aeronautics.
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