论文标题

关于氦气大气压等离子射流的气体加热效应

On the gas heating effect of helium atmospheric pressure plasma jet

论文作者

Nascimento, Fellype do, Gerling, Torsten, Kostov, Konstantin Georgiev

论文摘要

等离子体医学是一个新兴的研究领域,它是由适合产生低温等离子体的等离子体来源的发展驱动的。在许多情况下,此类设备可以在没有气流的情况下运行,从而从环境空气中产生血浆排放。但是,最常见的情况是在给定流量的情况下使用工作气体来产生等离子射流。氦(HE)是通常用作载气的气体之一,以产生冷大气压等离子体喷气机(CAPPJ),这主要是由于很容易点燃气体排放。但是,在这项工作中,观察到,He Cappj的大部分加热都可以来自HE气体的膨胀。这是通过使用光纤温度(FOT)传感器和热量输出的气温测量($ t_ {gas} $)的测量,并使用FOT和红外成像,而He流动撞击铜(CU)板上。通过在带有和没有放电点火的条件下的条件下,在有或没有放电点火的情况下,在有和没有放电的情况下,在带有和不放电点火的条件下的条件下,在带有和不放电的条件下的条件下,通过比较Cu($ t_ {Cu} $)的温度来实现此类发现。经过证实,随着距离气体插座的距离扩大,$ t_ {gas} $值也会增加,尤其是在低水路的情况下,即使没有放电点火。尽管温度随距离的升高,但仍可以在低流速下产生低于40 $^\ Circ $ c的等离子体喷射。

Plasma medicine is an emerging research field which has been driven by the development of plasma sources suitable to generate low temperature plasmas. In many cases, such devices can operate without a gas flow, producing a plasma discharge from the ambient air. However, the most common case is the use of a working gas at a given flow rate to produce a plasma jet. Helium (He) is one of the gases commonly used as the carrier gas to generate cold atmospheric pressure plasma jets (CAPPJs) due mainly to the easiness to ignite a gas discharge with it. However, in this work it was observed that most of the heating of a He CAPPJ can come just from the expansion of the He gas. This was found through measurements of gas temperature ($T_{gas}$), using fiber optic temperature (FOT) sensors, and thermal output, using both FOT and infrared imaging with the He flow impinging on a copper (Cu) plate. Such findings were achieved through comparisons of $T_{gas}$ and the temperature on the Cu ($T_{Cu}$) plate in the conditions with and without discharge ignition, as well as comparing $T_{gas}$ in the free gas/jet mode with and without discharge ignition. It was verified that the $T_{gas}$ values increased as the distance from the gas outlet was enlarged, especially at low He flow rates, even without discharge ignition. Despite the temperature increase with distance, it is possible to produce plasma jets with temperatures lower than 40 $^\circ$C at low He flow rates.

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