惯性约束聚变舱的物理度量标准

Plasma Pub Date : 2024-02-21 DOI:10.3390/plasma7010010
B. Cheng, Paul A. Bradley
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引用次数: 0

摘要

国家点火装置(NIF)上核聚变舱的性能受到热氘氚燃料(DT)物理性质的强烈影响,例如停滞时热点的质量、等密度和压力。所有这些临界量都取决于一个测量量,即特定内爆峰值能量与热点特定内能之比。这个独特的物理量不仅可以测量惯性约束聚变胶囊在点火过程中的增量,还可以测量推壳的内爆动能峰值转化为胶囊中热燃料内能的情况。对迄今为止现有的 NIF 发射进行了分析。将比值指标与点火标准进行了定量比较。结果为 NIF 实验提供了新的视角,通过微调内爆参数可以确定和控制燃烧等离子体的性能,从而改进点火胶囊的未来设计和预测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Physical Metric for Inertial Confinement Fusion Capsules
The performance of fusion capsules on the National Ignition Facility (NIF) is strongly affected by the physical properties of the hot deuterium–tritium (DT) fuel, such as the mass, areal density, and pressure of the hot spot at the stagnation time. All of these critical quantities depend on one measured quantity, which is the ratio of the specific peak implosion energy to the specific internal energy of the hot spot. This unique physical quantity not only can measure the incremental progress of the inertial confinement fusion capsules towards ignition but also measures the conversion of the peak implosion kinetic energy of the pusher shell into the internal energy of the hot fuel in a capsule. Analysis of existing NIF shots to date are performed. The ratio metric is compared quantitatively with the ignition criterion. Results provide new perspectives on the NIF experiments by which the performance of the burning plasma can be determined and controlled through the fine tune of the implosion parameters, which improves future designs and predictions of the ignition capsules.
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CiteScore
2.30
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