Experimental Study of Deicing and Anti-icing on a Cylinder by DBD Plasma Actuation

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Experimental Study of Deicing and Anti-icing on a Cylinder by DBD Plasma Actuation ( experimental-study-deicing-and-anti-icing-cylinder-by-dbd-pl )

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is found at x = 0 for all test voltages. Along the chord of the covered electrode, the temperature decreases almost linearly. a)Vp−p =9.1kV. b)Vp−p =11.4kV. c)Vp−p =12.0kV. d)Vp−p =13.0kV. e)Vp−p =14.0kV. f)Vp−p =15.0kV. Figure 6. Temperature distribution along chord of actuator at different operation times (F = 13.4 kHz). Fig. 7 represents the temperatures changing with operation times at x = 0 at different excited voltages. At the fixed voltage, the increasing process of the surface temperature undergoes three nearly linear phases. Variation rate of temperature with time, k, is calculated using equation 3, k = δT (1) δt Figure 7. Temperature variations with operation time at different AC-DBD excitation voltages (F = 13.4 kHz, x = 0). 7 of 14 American Institute of Aeronautics and Astronautics Downloaded by NORTHWESTERN POLYTECHICAL UNIV. on June 23, 2016 | http://arc.aiaa.org | DOI: 10.2514/6.2016-4019

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Experimental Study of Deicing and Anti-icing on a Cylinder by DBD Plasma Actuation

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