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Comparisons of Force Measurement Methods for DBD Plasma Actuators in Quiescent Air
Author(s) -
Alan R. Hoskinson,
N. Hershkowitz,
David E. Ashpis
Publication year - 2009
Publication title -
50th aiaa aerospace sciences meeting including the new horizons forum and aerospace exposition
Language(s) - English
Resource type - Conference proceedings
DOI - 10.2514/6.2009-485
Subject(s) - plasma actuator , electrode , dielectric barrier discharge , actuator , materials science , plasma , dielectric , mechanics , optoelectronics , electrical engineering , chemistry , physics , quantum mechanics , engineering
We have performed measurements of the force induced by both single (one electrode insulated) and double (both electrodes insulated) dielectric barrier discharge plasma actuators in quiescent air. We have shown that, for single barrier actuators with cylindrical exposed electrodes, as the electrode diameter decrease the force efficiencies increase much faster than a previously reported linear trend. This behavior has been experimentally verified using two different measurement techniques: stagnation probe measurements of the induced flow velocity and direct measurement of the force using an electronic balance. Actuators with rectangular cross-section exposed electrodes do not show the same rapid increase at small thicknesses. We have also shown that the induced force is independent of the material used for the exposed electrode. The same techniques have shown that the induced force of a double barrier actuator increases with decreasing narrow electrode diameter.

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