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Formation of plasma working fluids for compression by liner implosions

机译:形成等离子体工作流体,通过衬里内爆进行压缩

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Research on the formation of a hot hydrogen working fluid, which may be used in multiple concentric solid‐density liner implosions, is reported. In such implosions, an axisymmetric outer liner is driven by a multi‐megamp axial discharge, and a coaxial inner liner is driven by a working fluid contained between the liners. The fluid is shocklessly compressed to high pressure as the outer liner implodes around it. In the work reported here a 10 to 100 Torr pressure, hydrogen filled coaxial gun discharge was used to inject plasma into a diagnostic chamber simulating an interliner volume. Spectroscopically determined electron densities of between 1017and 1018cm−3and electron temperatures in the 0.5–2.0 eV range were obtained with a fair degree of reproducibility and symmetry. Two‐dimensional, time‐dependent magnetohydrodyna‐ mic computer simulations of the working fluid formation experiment have been performed, and the computations suggest that the present experiment achieves electron number densities and temperatures at the lower extreme of these limits, and neutral densities ∼ 0.3–1.0 ×1019cm−3. The simulations further suggest that the upper range, and beyond, can be achieved in a more energetic version of the present experiment.
机译:报道了热氢工作流体的形成研究,该流体可用于多个同心固体和连字符密度衬里内爆。在这种内爆中,轴对称外衬由多连字符轴向排放驱动,同轴内衬由衬垫之间的工作流体驱动。当外衬在其周围内爆时,流体被无冲击地压缩到高压。在本文报道的工作中,使用10至100托压力的氢气填充同轴枪放电将等离子体注入模拟衬里体积的诊断室中。光谱测定的电子密度在1017-1018cm-3之间,电子温度在0.5-2.0 eV范围内,具有相当程度的重现性和对称性。对工作流体形成实验进行了二维、时间、时态磁氢发电机和MIC计算机模拟,计算结果表明,本实验在这些极限的下限下实现了电子数密度和温度,中性密度∼0.3–1.0 ×1019cm−3。模拟进一步表明,上限和更高范围可以在本实验的更有能量的版本中实现。

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