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Numerical fluid solutions for nonlocal electron transport in hot plasmas: Equivalent diffusion versus nonlocal source

机译:热等离子体中非局部电子传输的数值流体解:等效扩散与非局部源

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摘要

Flux limitation and preheat are important processes in electron transport occurring in laser produced plasmas. The proper calculation of both of these has been a subject receiving much attention over the entire lifetime of the laser fusion project. Where nonlocal transport (instead of simple single flux limit) has been modeled, it has always been with what we denote the equivalent diffusion solution, namely treating the transport as only a diffusion process. We introduce here a new approach called the nonlocal source solution and show it is numerically viable for laser produced plasmas. It turns out that the equivalent diffusion solution generally underestimates preheat. Furthermore, the advance of the temperature front, and especially the preheat, can be held up by artificial 'thermal barriers'. The nonlocal source method of solution, on the other hand more accurately describes preheat and can stably calculate the solution for the temperature even if the heat flux is up the gradient.
机译:通量限制和预热是在激光产生的等离子体中发生的电子传输中的重要过程。这两方面的正确计算一直是激光融合项目整个生命周期中备受关注的主题。在已经对非局部传输(而不是简单的单个通量极限)进行建模的情况下,我们始终使用等效扩散解决方案,即将传输视为仅一个扩散过程。我们在这里介绍一种称为非局部源解决方案的新方法,并表明该方法在数值上适用于激光产生的等离子体。事实证明,等效扩散解决方案通常会低估预热。此外,可以通过人为的“热障”阻止温度前沿的提前,特别是预热。另一方面,非局部源求解法可以更准确地描述预热,并且即使热通量超过梯度,也可以稳定地计算温度的求解。

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