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Transition from diffuse to self-organized discharge in a high frequency dielectric barrier discharge

机译:从扩散到高频介电屏障放电中的漫反射到自组织放电

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Depending on the operating conditions, different regimes can be obtained in a dielectric barrier discharge (DBD): filamentary, diffuse (also called homogeneous) or self-organized. For a plane-to-plane DBD operated at high frequency (160 kHz) and at atmospheric pressure in helium gas, we show that the addition of a small amount of nitrogen induces a transition from the diffuse regime to a self-organized regime characterized by the appearance of filaments at the exit of the discharge. In this paper, we detail mechanisms that could be responsible of the transition from diffuse mode to this self-organized mode. We point out the critical role of the power supply and the importance of the gas memory effect from one discharge to the following one on the transition to the self-organised mode. The self-organized mode is usually attributed to a surface memory effect. In this work, we show an additional involvement of the gas memory effect on the self-organized mode.
机译:根据操作条件,可以在介电阻挡放电(DBD):丝状物中可以获得不同的制度:丝状,漫射(也称为均匀)或自组织。 对于以高频(160 kHz)和大气压在氦气中运行的平面到平面DBD,我们表明添加少量氮气从漫反射制度到特征的自组织制度 在排出的出口处的长丝的外观。 在本文中,我们详细介绍了从漫反射模式到这种自组织模式的转换的机制。 我们指出了电源的关键作用以及气体记忆效应从一个放电到下面的一个放电到自组织模式的重要性。 自组织模式通常归因于表面存储器效果。 在这项工作中,我们对自组织模式展示了燃气记忆效应的额外介绍。

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