A numerical model of shock wave propagation from a powerful high-pressure pulsed discharge in a gas-discharge chamber
编号:33 访问权限:仅限参会人 更新:2026-04-23 16:02:07 浏览:2次 张贴报告

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摘要

The radial propagation of a shock wave in a cylindrical high-pressure discharge chamber filled with hydrogen has been studied by numerical simulation. The disturbance source (shock wave) is a breakdown in the electrode gap with a current rise rate of ≈ 10¹¹ A/s. A system of gas dynamics equations for a compressible inviscid medium was used for the mathematical description [1], and the numerical solution was obtained using a one-dimensional finite-difference scheme in a cylindrically symmetric formulation. To enable rapid verification of the model, various simplified energy release models were tested [2]. Based on a comparison with a wide range of experimental data [3], it is shown that the model qualitatively reproduces the key processes: the evolution of the shock wave and the pressure on the chamber wall. The qualitative agreement of the calculated and experimental pressure profiles confirms the fundamental applicability of the numerical method. It is found that the accuracy of the simulation is highly sensitive to the initial gas pressure and the disturbance source model; the current quantitative discrepancies are attributed to the need for a more detailed description of the energy source characteristics and other plasma effects.

关键词
shock wave,high-current discharge,discharge chamber,high-density hydrogen,finite-differences
报告人
Jaroslav Triaskin
Researcher IEE RAS

稿件作者
Jaroslav Triaskin IEE RAS
Alexander Budin IEE RAS
Mikhail Pinchuk IEE RAS
Nikita Tryaskin IEE RAS;Saint Petersburg State Marine Technical University
Alexander Bogomaz IEE RAS
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重要日期
  • 05月12日

    2026

    会议日期

  • 04月15日 2026

    初稿截稿日期

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