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Active flow control over a backward-facing step using plasma actuation

机译:使用等离子体致动在向后的步骤上进行主动流动控制

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摘要

Due to the more stringent aviation regulations on fuel consumption and noise reduction, the interest for smaller and mechanically less complex devices for flow separation control has increased. Plasma actuators are currently among the most studied typology of devices for active flow control purposes due to their small size and lightweight. In this study, a single dielectric barrier discharge (SDBD) actuator is used on a backward-facing step to assess its effects on the separated turbulent shear layer and its reattachment location. A range of actuating modulation frequencies, related to the natural frequencies of shear layer instability (flapping) and vortex shedding instability, are examined. The particle image velocimetry technique is used to analyse the flow over the step and the reattachment location. The bulk-flow experiments show negligible effects both on the shear layer and on the reattachment location for every frequency considered, and the actuator is not able to induce a sufficient velocity increase at the step separation point.
机译:由于航空业对燃油消耗和降噪的规定更加严格,因此人们对用于流动分离控制的较小且机械复杂程度较低的设备的兴趣有所增加。等离子体致动器由于其体积小,重量轻而成为用于主动流量控制的设备研究最广泛的类型之一。在这项研究中,单个电介质势垒放电(SDBD)执行器用于向后的步骤,以评估其对分离的湍流剪切层及其重新附着位置的影响。检查了与剪切层不稳定性(拍打)和涡旋脱落不稳定性的固有频率有关的一系列致动调制频率。粒子图像测速技术用于分析步骤和重新连接位置上的流量。整体流实验表明,对于所考虑的每个频率,在剪切层和重新连接位置上的影响都可以忽略不计,并且执行器无法在阶跃分离点处引起足够的速度增加。

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