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首页> 外文期刊>Plasma Science, IEEE Transactions on >Study of the Characteristics of Cold Ar Atmospheric Pressure Plasma Jet Generated With Inverted Tapered Tube
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Study of the Characteristics of Cold Ar Atmospheric Pressure Plasma Jet Generated With Inverted Tapered Tube

机译:倒锥形管产生冷氩大气压等离子体射流特性的研究

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摘要

The atmospheric pressure plasma jet (APPJ) has become one of the hot research issues in plasma science and technology. In this paper, a cold Ar APPJ is generated using a dielectric barrier discharge configuration device equipped with an inverted tapered tube (ITT). Its characteristics are investigated by optical and electrical diagnostics, including discharge images, voltage-current waveforms, and optical emission spectra (OESs). The parameters, such as discharge power, gas temperature, and electronic excitation temperature (EET), are calculated and analyzed. All the above characteristics and parameters are compared with those of Ar APPJ generated with a conventional straight tube (CST). Furthermore, by numerical simulation, the flow field distribution of the ITT and CST is obtained and compared. The results show that the use of the ITT can raise Ar flow velocity, improve the distribution of Ar mole fraction, and Ar flow field. Moreover, the discharge power for the ITT is lower than that for the CST, so are the gas temperature and EET. The difference between theOESs is less obvious. Finally, the plasma plume develops along the inner surface of the CST with bits of apparent filamentary discharge, but along the central axis of the ITT and manifested as a stable and homogeneous discharge, which might be more promising for material processing and biomedical application in some cases.
机译:大气压等离子体射流(APPJ)已经成为等离子体科学技术领域的研究热点之一。在本文中,使用配备了倒锥管(ITT)的电介质势垒放电配置设备生成了冷Ar APPJ。通过光学和电气诊断研究其特性,包括放电图像,电压-电流波形和光学发射光谱(OES)。计算并分析诸如放电功率,气体温度和电子激发温度(EET)等参数。将以上所有特性和参数与使用常规直管(CST)生成的Ar APPJ进行比较。此外,通过数值模拟,获得并比较了ITT和CST的流场分布。结果表明,使用ITT可以提高Ar流速,改善Ar摩尔分数的分布和Ar流场。而且,ITT的放电功率低于CST的放电功率,气体温度和EET也是。 OES之间的差异不太明显。最后,等离子羽流沿着CST的内表面发展,并带有明显的丝状放电,但沿着ITT的中心轴并表现出稳定且均匀的放电,这对于某些材料的加工和生物医学应用可能更有希望案件。

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