Bulletin of the American Physical Society
77th Annual Gaseous Electronics Conference
Monday–Friday, September 30–October 4 2024; San Diego, California
Session FF1: Modeling & Simulation VIII
8:00 AM–9:15 AM,
Friday, October 4, 2024
Room: Great Room 1-4
Chair: Hari Sitaraman, National Renewable Energy Laboratory
Abstract: FF1.00002 : A Hybrid Approach using Deep Learning and Plasma Fluid Modeling for Simulating High-Power Microwave Breakdown
8:30 AM–8:45 AM
Presenter:
Bhaskar Chaudhury
(Group in Computational Science and HPC, DA-IICT, India.)
Authors:
Kalp Pandya
(Group in Computational Science and HPC, DAIICT, India.)
Bhaskar Chaudhury
(Group in Computational Science and HPC, DA-IICT, India.)
We validated the hybrid approach for simulating microwave streamers which focuses on the formation of a plasmoid due to HPM breakdown and its subsequent expansion into a single streamer, confined at the antinode between two incident linearly polarized waves with opposing wave vectors [1]. The evaluation includes a quantitative comparison between results obtained from classical and hybrid approaches in terms of the rate of streamer growth, shape of the streamer, and the overall spatio-temporal evolution of plasma density. Our initial results demonstrate that the proposed hybrid approach can serve as a novel and fast alternative for investigating the computationally challenging multiscale multiphysics simulation of HPM breakdown.
[1] Chaudhury et al 2011 Journal of Applied Physics 110 113306.
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