论文标题
表面AC介电屏障放电执行器中的电氢动力分布:彩流器是否决定了离子风轮廓?
The ElectroHydroDynamic force distribution in surface AC Dielectric Barrier Discharge actuators: do streamers dictate the ionic wind profiles?
论文作者
论文摘要
我们表明,在表面交流屏障排放(AC-DBD)中,时空电氢动力学(EHD)力的产生在正相和微分阶段的微分离状态下都受到彩流方案的强烈影响。着眼于空间EHD力谱,我们证明了离子风空间分布只能通过流媒体制度的积极贡献来解释。发现最大离子风的位置与裸露电极几毫米的彩带的最大伸长率直接相关。在AC-DBD操作的正和负阶段中,残留的体积和表面电荷再次与彩流器形成和燃烧燃料相关,导致各种正EHD力区域在一个AC中的时间平均值时,有助于实验观察到的诱导诱导的薄壁喷射。通过彻底阐述我们的数值结果,我们提供了对EHD力时时空演化的说明性解释,展示了流媒体的重要性,并在与实验相比的情况下检索了离子风空间曲线的正确表示。
We show that the spatio-temporal ElectroHydroDynamic (EHD) force production in surface AC-Dielectric Barrier Discharge (AC-DBD) actuators is strongly influenced by both the streamer regime during the positive phase and the micro-discharge regime during the negative phase. Focusing on the spatial EHD force profiles, we demonstrate that the ionic wind spatial distribution can only be explained by the positive contribution of the streamer regime. The location of maximum ionic wind is found to be directly linked with the maximum elongation of the streamers at several millimeters from the exposed electrode. In both positive and negative phases of the AC-DBD operation, residual volumetric and surface charges once again linked to the streamer formation and afterburn, result to a variety of positive EHD force zones which, when time-averaged in one AC period, contribute to the generation of the experimentally observed induced thin wall jet. Through a thorough elaboration of our numerical results, we provide an illustrative explanation of the EHD force spatio-temporal evolution, showcase the importance of streamers and retrieve a correct representation of the ionic wind spatial profiles when compared to experiments.