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首页> 外文期刊>Bulletin of the American Physical Society >APS -Annual Meeting of the APS Four Corners Section- Event - Finite element modeling of electrostatic discharge using a collisional plasma spark conductivity model
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APS -Annual Meeting of the APS Four Corners Section- Event - Finite element modeling of electrostatic discharge using a collisional plasma spark conductivity model

机译:APS-APS四角分会年会-活动-使用碰撞等离子体火花电导率模型进行静电放电的有限元建模

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Electrostatic discharge (ESD) is an important safety concern for many industrial operations, in particular those that involve risk for fire or explosion. A key aim for our work is to develop a physical model that can place limits on the current and energy of an ESD pulse that can be used for safety measures. We consider ESD pulses from charged, insulating materials to low-resistance victim loads. After implementing the full set of Maxwell equations in potential form using a finite element solver (COMSOL Multiphysics), we developed a framework for calculating the collisional processes in the spark channel plasma. We find that the energy that can be transferred to a low-resistance victim load is strongly limited by the surface resistance of the charged object and by the spark resistance, which is in turn fundamentally tied to the ionization of the gas. We have also analyzed simpler nonlinear spark resistance models that result from the thermodynamic energy balance for a cylindrically-uniform spark channel. We compared these simpler spark models alongside our more general plasma model and established which ESD regimes are valid for the simpler models.
机译:静电放电(ESD)是许多工业操作中的重要安全问题,尤其是那些涉及火灾或爆炸危险的操作。我们工作的主要目的是开发一种物理模型,该模型可以限制可用于安全措施的ESD脉冲的电流和能量。我们考虑了从带电的绝缘材料到低电阻受害者负载的ESD脉冲。使用有限元求解器(COMSOL Multiphysics)以电势形式实现全套麦克斯韦方程组后,我们开发了一个框架,用于计算火花通道等离子体中的碰撞过程。我们发现,可以转移到低电阻受害者负载的能量受到带电物体表面电阻和火花电阻的强烈限制,而火花电阻又从根本上与气体的电离有关。我们还分析了由圆柱均匀火花通道的热力学能量平衡产生的更简单的非线性火花阻模型。我们将这些较简单的火花模型与更通用的等离子模型进行了比较,并确定了哪些ESD方案对较简单的模型有效。

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