Efficient needle plasma actuators for flow control and surface cooling

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Abstract

We introduce a milliwatt class needle actuator suitable for plasma channels, vortex generation, and surface cooling. Electrode configurations tested for a channel configuration show 1400% and 300% increase in energy conversion efficiency as compared to conventional surface and channel corona actuators, respectively, generating up to 3.4m/s air jet across the channel outlet. The positive polarity of the needle is shown to have a beneficial effect on actuator efficiency. Needle-plate configuration is demonstrated for improving cooling of a flat surface with a 57% increase in convective heat transfer coefficient. Vortex generation by selective input signal manipulation is also demonstrated.

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APA

Zhao, P., Portugal, S., & Roy, S. (2015). Efficient needle plasma actuators for flow control and surface cooling. Applied Physics Letters, 107(3). https://doi.org/10.1063/1.4927051

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