Microscopic dynamics and mechanism of Trichel pulse discharge

Author:

Jiang Xinchen1,Wang Suikai1,Ha Jing2,Liu Fucheng1,He Shoujie13ORCID,Li Qing13

Affiliation:

1. College of Physics Science and Technology Hebei University Baoding China

2. Institute of Science Hebei Agricultural University Baoding China

3. Engineering Research Center of Zero‐carbon Energy Buildings and Measurement Techniques, Ministry of Education Hebei University Baoding China

Abstract

AbstractThe microscopic dynamics and formation mechanism of Trichel pulse discharge are investigated. A nonequal current transient effect exists in the Trichel pulse discharge. By reducing the limiting current resistance, the simulated current waveforms of Trichel pulse discharge are qualitatively and quantitatively consistent with those in the experiment. The dominant positive ions vary at different stages, which originate from the evolution of dominant reactions for the generation and consumption of charged particles. The existence of positive and negative charged layers results in the attenuation of the electric field at the rising edge of the Trichel pulse. The formation of the Trichel pulse originates from the changes in spatial charge density, resulting in alterations in the spatial electric field and ionization rate.

Publisher

Wiley

Subject

Polymers and Plastics,Condensed Matter Physics

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