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Experimental Study Coupled With Electrical Modeling for the Consideration of DBD-Based Plasma Jet

机译:考虑基于DBD的等离子射流的实验研究与电气建模

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In this paper, a dielectric-barrier discharge (DBD) of Ar:$hbox{N}_{2}$ mixtures at atmospheric pressure is studied in relation to plasma jet production. The discharge takes place in a capillary dielectric tube, and it is sustained by positive high-voltage pulses. It is herein claimed that, apart from the traditional DBD (which is developed perpendicularly to the gas flow and can produce afterglows), plasma jet propagates simultaneously parallel to the gas flow due to ionization waves guided by the dielectric tube. A quite simple electrical model is applied to simulate the proposed DBD and plasma jet coexistence. The concept of capacitive behavior of both barrier discharge and jet is taken into account. This model in combination with UV–visible optical emission spectroscopy and conventional photography supports the aforementioned statements. The dependence of the jet domination against the afterglow on the gas mixture is demonstrated, and the $hbox{N}_{2}$ additive at 2.5 $%$–3$%$ in Ar is found to be the most efficient for jet production. The model runs with the measured interelectrode voltage as input and yields the circuit total current as output. Matching between the measured current and the model output is attempted by adjusting two free parameters. This tuning of the free parameters provides reliable values for the electrical components of the model. Thus, a simple mean for realistic representation of both DBD and jet is achieved. This tool could be applied to the design of plasma jet reactors.
机译:在本文中,研究了Ar:$ hbox {N} _ {2} $混合物在大气压下的介电势垒放电(DBD)与等离子流产生的关系。放电发生在毛细管介质管中,并通过正高压脉冲维持。本文中要求保护的是,除了传统的DBD(垂直于气流方向发展并且会产生余辉)之外,由于介电管引导的电离波,等离子体射流平行于气流同时传播。应用了一个非常简单的电气模型来模拟建议的DBD和等离子体射流的共存。考虑了势垒放电和射流的电容行为的概念。该模型与紫外可见光发射光谱法和常规摄影技术相结合,支持了上述说法。证明了射流控制与余辉对气体混合物的依赖性,并且发现在氩气中2.5 $%$ – 3 $%$的$ hbox {N} _ {2} $添加剂对射流最有效生产。该模型以测得的极间电压作为输入,并产生电路总电流作为输出。通过调整两个自由参数来尝试在测量的电流和模型输出之间进行匹配。自由参数的调整为模型的电气组件提供了可靠的值。因此,获得了用于真实表示DBD和射流的简单方法。该工具可应用于等离子流反应器的设计。

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