Probing photo-ionization: simulations of positive streamers in varying N2:O2 mixtures
arXiv:1008.3309 · doi:10.1088/0022-3727/43/50/505201
Abstract
Photo-ionization is the accepted mechanism for the propagation of positive streamers in air though the parameters are not very well known; the efficiency of this mechanism largely depends on the presence of both nitrogen and oxygen. But experiments show that streamer propagation is amazingly robust against changes of the gas composition; even for pure nitrogen with impurity levels below 1 ppm streamers propagate essentially with the same velocity as in air, but their minimal diameter is smaller, and they branch more frequently. Additionally, they move more in a zigzag fashion and sometimes exhibit a feathery structure. In our simulations, we test the relative importance of photo-ionization and of the background ionization from pulsed repetitive discharges, in air as well as in nitrogen with 1 ppm O2 . We also test reasonable parameter changes of the photo-ionization model. We find that photo- ionization dominates streamer propagation in air for repetition frequencies of at least 1 kHz, while in nitrogen with 1 ppm O2 the effect of the repetition frequency has to be included above 1 Hz. Finally, we explain the feather-like structures around streamer channels that are observed in experiments in nitrogen with high purity, but not in air.
12 figures
References in corpus (10)
- Positive and negative streamers in ambient air: measuring diameter, velocity and dissipated energy
- Positive and negative streamers in ambient air: modeling evolution and velocities
- Photoionization in negative streamers: fast computations and two propagation modes
- The multiscale nature of streamers
- Review of recent results on streamer discharges and discussion of their relevance for sprites and lightning
- Positive streamers in air and nitrogen of varying density: experiments on similarity laws
- Streamers, sprites, leaders, lightning: from micro- to macroscales
- 3D hybrid computations for streamer discharges and production of run-away electrons
- Sprite discharges on Venus and Jupiter-like planets: a laboratory investigation
- Positive streamers in ambient air and a N2:O2-mixture (99.8 : 0.2)