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Zero dimensional model of atmospheric SMD discharge and afterglow in humid air

机译:潮湿空气中大气SMD排放和余辉的零维模型

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Summary form only given. Multiple time-scaled zero-dimensional models are used to simulate the time resolved number densities of multiple reactive oxygen and nitrogen species(RONs), including O3, NO2, NO3, N2O, N2O5, H2O2, HNO2 and HNO3, in a humid air plasma process at atmospheric pressure. Simulated is a total of 26 ionic species, electrons and 26 neutral species including multiple excited states. From the local Electron Energy Distribution Function (EEDF) the mean electron energy is determined and used in various reaction rate coefficients. A total of 624 reactions between the 53 species are simulated in two interdependent zero-dimensional models that differ in nine orders magnitude in temporal resolution, thereby reducing the computational load that is traditionally required in a complex system. A single homogenous volumetric discharge generated by a Surface Micro Discharge(SMD) setup is simulated. Through control variables, parameters such as: ignition frequency, deposited power density, duty cycle, discharge size, and humidity level will be varied in order to predict ideal operating conditions for appropriate SMD devices. The described model has been verified by matching simulation parameters and comparing results to that of previous works1 as well as matching current operating conditions and comparing to the measurements of an experimental mesh-like SMD.
机译:仅提供摘要表格。使用多个时标零维模型在潮湿的空气等离子体中模拟多种反应性氧和氮物种(RON)的时间分辨数密度,其中包括O3,NO2,NO3,N2O,N2O5,H2O2,HNO2和HNO3在大气压下进行处理。总共模拟了26种离子物种,电子和26种中性物种,包括多个激发态。根据局部电子能量分布函数(EEDF),可以确定平均电子能量并将其用于各种反应速率系数中。在两个相互依存的零维模型中模拟了53个物种之间的总共624个反应,该模型在时间分辨率上相差9个数量级,从而减少了复杂系统中传统上所需的计算量。模拟了由表面微放电(SMD)设置生成的单个均匀体积放电。通过控制变量,诸如点火频率,沉积功率密度,占空比,放电尺寸和湿度水平之类的参数将发生变化,以预测适用于SMD设备的理想工作条件。所描述的模型已通过匹配仿真参数并将结果与​​以前的工作1进行比较,并与当前的工作条件进行匹配并与实验性网状SMD的测量进行了比较,从而得到了验证。

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