论文标题

融合反应率具有漂移双 - 麦克斯韦离子速度分布

Fusion Reactivities with Drift bi-Maxwellian Ion Velocity Distributions

论文作者

Xie, Huasheng, Tan, Muzhi, Luo, Di, Li, Zhi, Liu, Bing

论文摘要

融合反应性的计算涉及一个复杂的六维积分,该积分考虑了两个反应物的融合横截面和速度分布。但是,更简化的一维积分形式在某些情况下可以有用,例如研究融合产率或诊断离子能谱。这种较简单的形式是在一些特殊情况下得出的,例如两个麦克斯韦分布的组合,一个梁 - 马克斯韦利亚的组合和梁目标组合,并且可以大大降低计算成本。在这项研究中,结果表明,两个漂移速度,温度和各向异性不同的两种漂移双 - 马克斯韦尔反应物的反应性也可以降低为一维形式,将现有的衍生物统一为单个表达。该结果用于研究由于梁和温度各向异性的结合而导致的融合反应性的潜在增强。对于融合能中的相关参数,增强因子可能大于20 \%,这对于质子 - 孔(P-B11)融合尤其重要,因为该因子可能会对Lawson Fusion融合增益标准产生重大影响。

The calculation of fusion reactivity involves a complex six-dimensional integral that takes into account the fusion cross-section and velocity distributions of two reactants. However, a more simplified one-dimensional integral form can be useful in certain cases, such as for studying fusion yield or diagnosing ion energy spectra. This simpler form has been derived in a few special cases, such as for a combination of two Maxwellian distributions, a beam-Maxwellian combination, and a beam-target combination, and can greatly reduce computational costs. In this study, it is shown that the reactivity for two drift bi-Maxwellian reactants with different drift velocities, temperatures, and anisotropies can also be reduced to a one-dimensional form, unifying existing derivations into a single expression. This result is used to investigate the potential enhancement of fusion reactivity due to the combination of beam and temperature anisotropies. For relevant parameters in fusion energy, the enhancement factor can be larger than 20\%, which is particularly significant for proton-boron (p-B11) fusion, as this factor can have a significant impact on the Lawson fusion gain criteria.

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