Effect of airflow on the discharge uniformity at different cycles in the repetitive unipolar nanosecond‐pulsed dielectric barrier discharge

Author:

Wang Yu‐Ying12ORCID,Yan Hui‐Jie1,Bai Xiao‐Dong3,Li Ting1ORCID,Schulze Julian14,Wang Xiao1,Song Jian1,Zhang Quan‐Zhi1ORCID

Affiliation:

1. School of Physics Dalian University of Technology Dalian People's Republic of China

2. College of Science Inner Mongolia University of Science and Technology Baotou People's Republic of China

3. Research and Production Department Inner Mongolia Metal Material Research Institute Baotou People's Republic of China

4. Department of Electrical Engineering and Information Sciences Ruhr‐University Bochum Bochum Germany

Abstract

AbstractThis study explores the discharge uniformity at different cycles under different airflow velocities in nanosecond‐pulsed dielectric barrier discharge. Based on a proper choice of the airflow velocity and discharge parameters, diffuse discharges can be maintained at an air gap of 5–7 mm. At higher airflow velocities, the discharge may transition to a complex mode, in which the diffuse and filamentary regions are maintained simultaneously. When the discharge is operated at a higher frequency, higher voltage, or smaller gas gap, the area of diffuse discharge can be expanded to a certain extent. The discharge characteristics indicate that airflow lowers the gas temperature and modulates the preionization degree, which induces the generation of a diffuse discharge for a properly adjusted airflow velocity.

Publisher

Wiley

Subject

Polymers and Plastics,Condensed Matter Physics

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