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Evaluation of the neutron production rate using D-D and D-T fuel in an inertial electrostatic confinement fusion device

机译:在惯性静电限制融合装置中使用D-D和D-T燃料评估中子生产速率

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摘要

The correlation between the neutron production rate and fuel species in a spherical inertial electrostatic confinement fusion (IECF) device is investigated by solving the Poisson equation for various ion and electron distribution functions. The fuel ion energy distribution function is determined at each radial point. The fusion reaction rate is evaluated from the energy distribution function. The dependence of the neutron production rate (NPR) on some important parameters, like the ion convergence, the broadening of the distributions in the energy space, working pressure and fuel species, are also investigated. Compared with the IECF device with D-D, numerical calculations show that by increasing the percentage of tritium in the D-T mixture fuel the neutron production rate grows significantly.
机译:通过求解各种离子和电子分布函数的泊松方程,研究了球形惯性静电限制融合(IECF)装置中的中子生产速率和燃料种类之间的相关性。 在每个径向点处确定燃料离子能量分布函数。 从能量分配功能评估融合反应速率。 还研究了中子生产率(NPR)对一些重要参数的依赖性,如离子收敛,能量空间中的分布,工作压力和燃料种类的扩展。 与具有D-D的IECF器件相比,数值计算表明,通过增加D-T混合物燃料中的氚的百分比,中子生产速率显着增长。

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