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Kinetic modelling for an atmospheric pressure argon plasma jet in humid air

机译:湿空气中大气压氩等离子体射流的动力学建模

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A zero-dimensional, semi-empirical model is used to describe the plasma chemistry in an argon plasma jet flowing into humid air, mimicking the experimental conditions of a setup from the Eindhoven University of Technology. The model provides species density profiles as a function of the position in the plasma jet device and effluent. A reaction chemistry set for an argon/humid air mixture is developed, which considers 84 different species and 1880 reactions. Additionally, we present a reduced chemistry set, useful for higher level computational models. Calculated species density profiles along the plasma jet are shown and the chemical pathways are explained in detail. It is demonstrated that chemically reactive H, N, O and OH radicals are formed in large quantities after the nozzle exit and H_2, O_2 (~1Δ _g), O_3, H_2O_2, NO_2, N _2O, HNO_2 and HNO_3 are predominantly formed as 'long living' species. The simulations show that water clustering of positive ions is very important under these conditions. The influence of vibrational excitation on the calculated electron temperature is studied. Finally, the effect of varying gas temperature, flow speed, power density and air humidity on the chemistry is investigated.
机译:零维半经验模型用于描述流入潮湿空气的氩等离子体射流中的等离子体化学,模仿了埃因霍温科技大学的装置的实验条件。该模型根据等离子体喷射装置和流出物中的位置提供物种密度分布。已开发出一套适用于氩气/湿空气混合物的反应化学试剂,该试剂考虑了84种不同的物质和1880种反应。此外,我们提出了简化的化学组,可用于更高级别的计算模型。显示了沿等离子流计算出的物种密度分布,并详细解释了化学途径。结果表明,在喷嘴出口后大量形成了化学反应性的H,N,O和OH自由基,并且主要形成为H_2,O_2(〜1Δ_g),O_3,H_2O_2,NO_2,N_2O,HNO_2和HNO_3。长寿的物种。仿真表明,在这些条件下,正离子的水聚集非常重要。研究了振动激发对计算出的电子温度的影响。最后,研究了改变气体温度,流速,功率密度和空气湿度对化学反应的影响。

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