Kinetic model of grating-like DBD fed with flowing humid air

Liyang Zhang, Zhigang Liu, Yuntao Guo, Jinbao Liu, Kai Wang, Haiyun Luo, Yangyang Fu
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Abstract

This work proposes a coupled kinetic model to capture the spatiotemporal evolution behaviors of reactive species generated by a grating-like dielectric barrier discharge (DBD) operated in flowing humid air. The coupled model incorporates a zero-dimensional (0D) discharge model for the discharge filament and a 0D kinetic model or 2D fluid model for the afterglow region. The model is experimentally validated by the ozone measurements under different airflow rates and power levels. With the pseudo-1D plug flow approximation, the spatial distribution of species obtained by the 0D afterglow model agrees well with the 2D fluid model. The kinetics of reactive oxygen and nitrogen species (RONS) in the discharge and afterglow region and the underlying pathways are analyzed. It is predicted by the model that there exists an optimal discharge power or airflow rate to acquire a maximum density of short-lived species (OH, O2(a1Δ), HO2, etc.) delivered to a given location in the afterglow region. The key factor influencing the plasma chemistry is discharge power, regardless of initial species density, and less concerned with pulse width. The proposed model provides hints for a better understanding of DBD-relevant plasma chemistry operated in ambient air.
以流动湿空气为原料的栅格状 DBD 动力学模型
这项研究提出了一种耦合动力学模型,用于捕捉在流动潮湿空气中运行的光栅状介电阻挡放电(DBD)所产生的反应物的时空演化行为。该耦合模型包含放电丝的零维放电模型和余辉区的零维动力学模型或二维流体模型。该模型通过不同气流速率和功率水平下的臭氧测量结果进行了实验验证。通过伪一维塞流近似,0D 余辉模型得到的物种空间分布与二维流体模型十分吻合。分析了放电区和余辉区活性氧和氮物种(RONS)的动力学及其基本途径。根据模型预测,存在一个最佳放电功率或气流速率,以获得输送到余辉区给定位置的短寿命物种(OH、O2(a1Δ)、HO2 等)的最大密度。影响等离子体化学性质的关键因素是放电功率,与初始物种密度无关,而与脉冲宽度关系不大。所提出的模型为更好地理解在环境空气中运行的 DBD 相关等离子体化学提供了提示。
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