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Experimental investigation of induced velocity by dielectric barrier discharge plasma actuator in different configurations

机译:不同配置介电阻挡放电等离子体致动器诱导速度的实验研究

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This paper aims to study the effect of different geometrical and electrical parameters, including the voltage, frequency, dielectric thickness, gap width between electrodes, length of electrodes, number of electrodes, and shapes of electrodes, on the induced velocity by the Dielectric Barrier Discharge (DBD) plasma actuators in quiescent air. In addition, the effect of the course of induced velocity evolution in the downstream of actuators has been investigated for different geometries. The streamwise velocity was obtained through the total and static pressure measurement using silicon tubes. The model is a flat plate equipped with a DBD plasma actuator. These experiments were performed for the peak-to-peak voltage range between 8 and 15 kV, and two values of frequency are equivalent to 5 and 10 kHz. The results showed that the multilinear DBD plasma actuator has a maximal induced velocity in the same voltage and frequency as of a single DBD plasma actuator. Evaluation of the induced velocity along the streamwise direction for multilinear, serpentine, and horseshoe actuators showed that these actuators had more than one induced velocity peak.
机译:本文旨在研究不同几何和电气参数的效果,包括电极,电极之间的电压,频率,介电厚度,间隙宽度,电极长度,电极数和电极的形状,在介电屏障放电的诱导速度上(DBD)静态空气中的等离子体执行器。此外,已经研究了不同几何形状的致动器下游诱导速度演化过程的效果。通过使用硅管通过总和静压测量获得流速速度。该模型是配备有DBD等离子致动器的平板。对8至15kV的峰峰值电压范围进行这些实验,并且两个频率值相当于5和10kHz。结果表明,多线性DBD等离子体致动器具有与单个DBD等离子体致动器相同的电压和频率的最大诱导速度。评估沿着多线性,蛇形和马蹄形致动器的流动方向的诱导速度的评估表明,这些致动器具有多于一个诱导速度峰。

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