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Current Measurements and Diagnosis on Dielectric Barrier Discharge in a Coaxial Geometry at Atmospheric Pressure

机译:大气压下同轴几何介质中的电介质阻挡层放电的电流测量和诊断

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Discharge current has been measured to diagnose the discharge modes of dielectric barrier discharge in a coaxial geometry through a mixture flows of argon and trace of air at one atmospheric pressure. Experimental results show that there are two discharge modes in the dielectric barrier discharge, corona discharge mode and glow discharge mode. The corona discharge only occurs in the tip of needle when the applied voltage not reaches the critical value for breakdown of the whole gas gap, and the current intensity is very low. The glow discharge is generated from the vicinity of needle tip to the entire tube gradually and turns uniform at last when the applied voltage exceeds the breakdown voltage for the whole gap, and the current intensity becomes higher. Under the same experimental parameters, the current intensity decreases with increasing the content of air. Experimental results also show that the critical value for breakdown of the whole gas gap becomes higher with increasing the content of air. However, it will decreases with increasing the gas velocity and the frequency of the applied voltage.
机译:已经测量了放电电流,以通过在一个大气压下的氩气和微量空气的混合流来诊断同轴几何形状中的介质阻挡放电的放电模式。实验结果表明,介质阻挡放电有两种放电模式,电晕放电模式和辉光放电模式。当施加的电压未达到整个气隙击穿的临界值,并且电流强度非常低时,电晕放电仅在针尖发生。当所施加的电压超过整个间隙的击穿电压时,辉光放电从针尖附近逐渐向整个管产生,并最终变为均匀,电流强度变高。在相同的实验参数下,电流强度随着空气含量的增加而降低。实验结果还表明,随着空气含量的增加,整个气隙破裂的临界值变得更高。但是,它将随着气体速度和施加电压频率的增加而降低。

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