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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Simulation of the ignition transient in RF inductively-coupled plasma torches
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Simulation of the ignition transient in RF inductively-coupled plasma torches

机译:射频电感耦合等离子体炬点火瞬变的仿真

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摘要

The paper deals with the time-dependent numerical simulation of inductively-coupled plasma torches during the ignition transient, which is induced by a graphite rod and leads to the final, self-sustaining plasma condition. The study has been performed by using a 2D time-dependent fluid-magnetic code based on the SIMPLER algorithm within the assumptions of laminar flow, local thermodynamic equilibrium conditions and optically thin plasma. The graphite rod has been treated as a real obstacle for the gas and the electron emission due to the thermoionic effect has been suitably taken into account. The advantage of using a time-dependent code in order to select different plasma operating conditions that can lead to stable discharges is pointed out. Results for both argon and air discharges are presented for different torch geometries, RF frequencies and inlet gas configurations (also including the presence of a carrier gas injected along the axis of the torch). Moreover, the final self-sustaining plasma configurations obtained are compared, when available, with results coming from static models, which have been published by other authors.
机译:本文研究了在点火瞬变过程中感应耦合等离子体炬的时变数值模拟,该过程由石墨棒引起,并导致最终的自持等离子体条件。该研究是在层流,局部热力学平衡条件和光学稀薄等离子体的假设下,使用基于SIMPLER算法的二维时变流体磁代码进行的。石墨棒已经被视为对气体的真正障碍,并且已经适当考虑了由于热离子效应而产生的电子发射。指出了使用时间相关代码以选择可以导致稳定放电的不同等离子体操作条件的优点。给出了针对不同的割炬几何形状,RF频率和入口气体配置(还包括沿割炬轴线注入的载气)的氩气和空气排放结果。此外,在可获得的情况下,将最终获得的自持血浆配置与其他作者已发表的静态模型的结果进行比较。

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