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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Modeling of diffusive plasmas in local thermodynamic equilibrium with integral constraints: application to mercury-free high pressure discharge lamp mixtures
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Modeling of diffusive plasmas in local thermodynamic equilibrium with integral constraints: application to mercury-free high pressure discharge lamp mixtures

机译:集成约束局部热力学平衡中扩散等离子体的建模:在无汞的高压放电灯混合物中的应用

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摘要

The mercury free lamp model previously discussed in Gnybida et al (2014 J. Phys. D: Appl. Phys. 47 125201) did not account for self-consistent diffusion and only included two molecular transitions. In this paper we apply, for the first time, a self-consistent diffusion algorithm that features (1) species/mass conservation up to machine accuracy and (2) an arbitrary mix of integral (total mass) and local (cold spot) constraints on the composition. Another advantage of this model is that the total pressure of the gas is calculated self consistently. Therefore, the usage of a predetermined pressure is no longer required.
机译:之前在GNYBIDA等人(2014 J. physta opl.dappl.pmopl.7125201)中讨论过的Mercury Free Lamp模型,没有考虑自我一致的扩散,并且仅包括两个分子过渡。 在本文中,我们首次适用于自一致的扩散算法,该算法(1)种类/质量保护高达机器精度和(2)一组整体(总质量)和局部(冷点)约束的任意混合 在组成上。 该模型的另一个优点是气体的总压力一致地计算自动。 因此,不再需要使用预定压力。

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