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ANALYTIC ICF HOHLRAUM ENERGETICS

机译:解析ICF大麦能源

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We apply recent analytic solutions to the radiation diffusion equation to problems of interest for ICF hohlraums. The solutions provide quantitative values for absorbed energy which are of use for generating a desired radiation temperature vs. time within the hohlraum. Comparison of supersonic and subsonic solutions (heat front velocity faster or slower, respectively, than the speed of sound in the x-ray heated material) suggests that there may be some advantage in using high Z metallic foams as hohlraum wall material to reduce hydrodynamic losses, and hence, net absorbed energy by the walls. Analytic and numerical calculations suggest that the loss per unit area might be reduced ~20% through use of foam hohlraum walls. Reduced hydrodynamic motion of the wall material may also reduce symmetry swings, as found for heavy ion targets.
机译:我们将最新的解析解应用于辐射扩散方程,以解决ICF霍尔效应所关注的问题。该解决方案提供了吸收能量的定量值,该定量值可用于在全息图中生成所需的辐射温度与时间的关系。超声和亚声速解决方案的比较(分别比X射线加热的材料中的声速快或慢),表明使用高Z金属泡沫材料作为泡沫壁材料来减少流体动力损失可能有一些优势。 ,因此,壁吸收了净能量。分析和数值计算表明,使用泡沫陶土墙可以使单位面积的损失减少约20%。如重离子靶所发现的,壁材料的减少的流体动力运动还可以减少对称摆动。

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