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The effects of applying different bias voltages and phase differences on performance of an asymmetric surface dielectric barrier discharge; an experimental investigation

机译:施加不同的偏置电压和相位差对不对称表面介电势垒放电性能的影响;实验研究

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In the present research, the performance of the electrohydrodynamic force in an asymmetric surface dielectric barrier discharge actuator has been investigated at different bias voltages. The effects of DC, AC plus DC (DC-offset), and sinusoidal bias voltages on the force generation have been studied through measuring the electric wind velocity profiles, surface potential, and electric field. The results showed that applying DC and DC-offset biases to the lower electrode instead of connecting it to the ground in a typical case increased the charge deposition on the dielectric surface and consequently reduced the electrohydrodynamic force generation. This effect was also observed in case of exchanging these voltages with AC sinusoidal voltage of the upper electrode. In addition, as a new idea, two-phase shifted AC voltage was applied to the electrodes and the resulting changes have been studied. The obtained results at $$180^{^circ }$$ 180 ° phase difference were very noticeable and showed 46% improvement in the maximum velocity of the induced flow relative to the grounded electrode with the same input power. Using this technique, a certain wind velocity can be obtained at relatively lower voltages and input powers compared to the conventional case of grounding the lower electrode. Such a capability is significant in aerodynamic applications, where applying large values of the high voltages may disturb the operational systems.
机译:在本研究中,已经研究了在不同偏置电压下非对称表面介质阻挡放电致动器中的电动流体动力的性能。通过测量电风速分布,表面电势和电场,研究了直流,交流加直流(直流偏移)和正弦偏置电压对力产生的影响。结果表明,在典型情况下,将DC和DC偏移偏压施加到下电极,而不是将其连接到地面,会增加电荷在电介质表面上的沉积,从而减少电动势的产生。在用上电极的交流正弦电压交换这些电压的情况下也观察到了这种效果。另外,作为新思想,对电极施加了两相移动的交流电压,并研究了由此产生的变化。在180°相位差下获得的结果非常明显,并且在相同输入功率下,相对于接地电极,感应流的最大速度提高了46%。与将下部电极接地的常规情况相比,使用该技术可以在相对较低的电压和输入功率下获得一定的风速。这种功能在空气动力学应用中非常重要,在空气动力学应用中,施加高电压值可能会干扰操作系统。

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