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Estimation model of switching delay for gas-insulated trigatron switches

机译:气体绝缘Trigatron开关的开关延迟估计模型

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Based on the gas discharge theory involving distorted E-field enhancement, a physical model is proposed to estimate the switching delay for gas-insulated trigatron spark gaps with a trigger pin inside the main electrode. Two discovered breakdown modes, i.e., fast-breakdown mode (FBM) and slow-breakdown mode (SBM), can be unified in this model. Raether criterion can distinguish these two modes. If the main E-field and enhanced E-field near the trigger pin tip are great enough, FBM forms easily. Otherwise, if streamer development needs to rely on the second ionization process and relevant distorted E-field enhancement, the breakdown of the main gap would turn into SBM. The enhanced E-field near the trigger pin tip may affect the threshold main E-field of FBM. The distorted E-field enhancement may affect the switching delay length of SBM.
机译:基于涉及电场畸变增强的气体放电理论,提出了一种物理模型来估计主电极内部带有触发销的气体绝缘三角发电机火花隙的切换延迟。可以在此模型中统一发现的两种故障模式,即快速故障模式(FBM)和慢故障模式(SBM)。 Raether准则可以区分这两种模式。如果靠近触发针尖的主电场和增强电场足够大,则容易形成FBM。否则,如果拖缆的开发需要依靠第二次电离过程和相关的畸变电场增强,则主要缺陷的分解将变成SBM。触发针尖端附近的增强电场可能会影响FBM的阈值主电场。失真的电场增强可能会影响SBM的切换延迟长度。

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