论文标题

通过自相似溶液的辐射热流中的超音速过渡区域

Supersonic-subsonic transition region in radiative heat flow via self-similar solutions

论文作者

Malka, Elad, Heizler, Shay I.

论文摘要

我们使用近似的自相似溶液研究了热量血浆中辐射驱动的热波的辐射流体动力学流动。具体而言,我们专注于纯辐射超音速流与纯亚官方状态之间的中间状态。使用精确的自相似溶液和数值模拟对这两个方案进行了研究,但是,大多数研究都使用了数值模拟,这主要是因为辐射热浪和冲击区域并非完全相似。在里程碑的工作中[J。 Garnier等人,物理。 Plas。,13,092703(2006)],发现对于特定的功率定律依赖温度曲线,存在独特的自我相似解决方案,这对于所有物理状态都是有效的。在这项工作中,我们使用简单的分析考虑因素近似Garnier的精确解决方案。与预期有效性范围内不同热力学谱的数值模拟相比,该近似解决方案与数值模拟相比产生了良好的一致性。此外,我们再次为物质吸收的能量提供了近似解决方案,以实现一般的幂律温度剖面。与黄金和$ \ Mathrm {TA_2O_5} $的精确数值模拟相比,我们对能量的大概自相似解决方案产生了很好的结果。我们还将自相似溶液与实验的结果进行了比较,该实验的辐射温度测量结果是在低密度泡沫中直接解决的,与中间状态有关,从而产生了良好的一致性和类似的趋势。不同的模型以及数值模拟是分析超音速subsonic过渡区域的强大工具。

We study the radiative hydrodynamics flow of radiation-driven heat waves in hot dense plasmas, using approximate self-similar solutions. Specifically, we have focused on the intermediate regime between pure radiative supersonic flow and the pure subsonic regime. These two regimes were investigated both using exact self-similar solutions and numerical simulations, however, most of the study used numerical simulations, mainly because the radiative heat wave and the shock regions are not self-similar altogether. In a milestone work [J. Garnier et al., Phys. Plas., 13, 092703 (2006)], it was found that for a specific power law dependency temperature profile, a unique exact self-similar solution exists, that is valid for all physical regimes. In this work we approximate Garnier's exact solution for a general power-law temperature-dependency, using simple analytical considerations. This approximate solution yields a good agreement compared to numerical simulations for the different thermodynamic profiles within the expected range of validity. In addition, we offer an approximate solution for the energies absorbed in the matter, again, for a general power-law temperature profile. Our approximate self-similar solution for the energy yields very good results comparing to exact numerical simulations for both gold and $\mathrm{Ta_2O_5}$. We also set a comparison of our self-similar solutions with the results of an experiment for radiation temperature measurement in a hohlraum in low-density foams that is addressed directly, to the intermediate regime, yielding a good agreement and similar trends. The different models as well as the numerical simulations are powerful tools to analyze the supersonic-subsonic transition region.

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