Electromagnetic Flow Control in Hypersonic Rarefied Environment
ID:35 View Protection:ATTENDEE Updated Time:2025-09-30 11:50:50 Hits:356 Oral Presentation

Start Time:2025-10-10 14:45(Asia/Shanghai)

Duration:15min

Session:S1 Computer simulations for reducing CO2 emission » S6-1Session 6-1: Numerical methods in multiscale and multi-physics modeling

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Abstract

The Unified Gas-Kinetic Wave-Particle (UGKWP) method, developed for multiscale simulation of partially ionized plasmas, has been extended to unstructured meshes, enabling the modeling of electromagnetic flows around a hemisphere across near-continuum to rarefied regimes. To the best of our knowledge, this work represents the first application of a multiscale plasma solver to this problem. In our approach, neutrals, ions, and electrons are treated as distinct species, with electrons modeled beyond the conventional fluid approximation. The numerical implementation is validated through comparison with reference solutions for neutral hypersonic flow around a sphere, as well as benchmarking against experimental data for a Mach 4.75 pre-ionized argon flow. In both cases, the UGKWP results show good agreement with the reference and experimental data. The findings reveal that rarefied effects play a significant role in the prediction of electromagnetic flow control, underscoring the necessity of multiscale modeling in plasma flow applications.

Keywords
unified gas-kinetic wave-particle method,partially-ionized plasma
Speaker
Zhigang Pu
Hong Kong University of Science and Technology, China

Submission Author
Zhigang Pu Hongkong University of Science and Technology
Kun Xu Hong Kong University of Science and Technology
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Important Date
  • Conference Date

    Oct 09

    2025

    to

    Oct 13

    2025

  • Oct 13 2025

    Registration deadline

  • Nov 15 2025

    Draft paper submission deadline

Sponsored By
Huazhong University of Science and Technology
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