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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Spatial and temporal evolutions of ozone in a nanosecond pulse corona discharge at atmospheric pressure
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Spatial and temporal evolutions of ozone in a nanosecond pulse corona discharge at atmospheric pressure

机译:大气压力下纳秒级脉冲电晕放电中臭氧的时空演化

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摘要

This paper deals with the experimental determination of the spatial and temporal evolutions of the ozone concentration in an atmospheric pressure pulsed plasma, working in the nanosecond regime. We observed that ozone was produced in the localized region of the streamer. The ozone transport requires a characteristic time well above the millisecond. The numerical modelling of the streamer expansion confirms that the hydrodynamic expansion of the filamentary discharge region during the streamer propagation does not lead to a significant transport of atomic oxygen and ozone. It appears therefore that only diffusional transport can take place, which requires a characteristic time of the order of 50 ms.
机译:本文涉及在大气压脉冲等离子体中以纳秒范围工作的臭氧浓度的时空演变的实验确定。我们观察到臭氧是在拖缆的局部区域产生的。臭氧传输需要一个远远超过毫秒的特征时间。拖缆膨胀的数值模型证实,在拖缆传播期间,丝状放电区域的水力膨胀不会导致原子氧和臭氧的大量输送。因此,似乎只能发生扩散传输,这需要大约50 ms的特征时间。

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