Bulletin of the American Physical Society
77th Annual Gaseous Electronics Conference
Monday–Friday, September 30–October 4 2024; San Diego, California
Session IW1: Atmospheric and High Pressure Plasmas I
8:00 AM–9:30 AM,
Wednesday, October 2, 2024
Room: Great Room 5
Chair: Yiguang Ju, Princeton University
Abstract: IW1.00002 : Electrical breakdown in pure gases with different field enhancement factor
8:15 AM–8:30 AM
Presenter:
Jonathan Ranucci
(G2ELab)
Authors:
Jonathan Ranucci
(G2ELab)
Nelly Bonifaci
(G2ELab)
Olivier Lesaint
(G2ELab)
Rachelle Hanna
(G2ELab)
François Gentils
(Schneider Electric)
In this context, we study the physical characteristics of discharges in pure CO2, Air, N2, CO for different electric field geometries obtained with different electrode types, under positive and negative voltage impulse and DC. The point-plane geometry with sharp radius of curvature (Rc=0.2mm at 50mm distance from the plane) allows obtaining a strongly inhomogeneous field. It is not directly representative of a real application, but strongly facilitates the study of pre-breakdown phenomena (i.e. streamer or leader) by “forcing” their inception. The sphere-plane geometry (Rc=5mm, 50 mm distance) is more representative of a real application, while the plane-plane geometry provides an uniform field and can be compared with the classical Paschen’s law.
In inhomogeneous field breakdown is controlled by pre-discharge propagation conditions. In homogeneous field the breakdown becomes controlled by pre-discharge initiation: when a pre-discharge is initiated, it always leads to breakdown. Pressure influences the initiation voltage of these pre-discharges. The results obtained allows comparing breakdown voltages in several pure gases over a wide range of conditions, and points to the complex and sometimes erratic behavior of CO2.
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