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首页> 外文期刊>Journal of Electrostatics >Positive and negative sawtooth signals applied to a DBD plasma actuator - influence on the electric wind
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Positive and negative sawtooth signals applied to a DBD plasma actuator - influence on the electric wind

机译:应用于DBD等离子执行器的正负锯齿信号-对电风的影响

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The influence of the electric signal shape applied to a surface dielectric barrier discharge (DBD) actuator is investigated in order to optimise the produced electric wind. This report also gives insights on the mechanisms involved in the electro-fluido-dynamic (EFD) operated by actuators based on atmospheric non-thermal discharges in air. The parameters of the electric signal that maximises the produced electric wind in quiescent air are investigated with a positive and negative sawtooth waveforms. The induced airflow properties are observed with a particle image velocimetry (PIV) set-up. The positive sawtooth waveform results in a more filamentary discharge and generates an electric wind with maximum velocities close to the active air exposed electrode. This contrasts with the negative sawtooth waveform that does not create as many filaments and induces electric wind velocities more homogeneously distributed along the dielectric surface. Even though the velocities values are of the same order, the shape of the vortex generated above the air exposed electrode is very dependant on the waveform.
机译:研究了电信号形状对表面介电势垒放电(DBD)致动器施加的影响,以优化产生的电风。该报告还提供了对基于空气中大气非热排放的执行器进行的电动流体动力学(EFD)涉及的机理的见解。用正和负锯齿波形研究使静态空气中产生的最大电风最大化的电信号参数。通过粒子图像测速(PIV)设置可以观察到诱导的气流特性。正的锯齿形波形会导致更多的丝状放电,并产生最大速度接近暴露在空气中的活性风的电风。这与负锯齿波形相反,负锯齿波形不会产生那么多的细丝,并且会感应沿电介质表面更均匀分布的电风速。即使速度值是相同数量级,在暴露于空气的电极上方产生的涡旋的形状也非常依赖于波形。

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