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HL-2A装置上DD热核聚变中子产额和通量的估算 被引量:1
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作者 郦文忠 杨进蔚 +1 位作者 张炜 曾庆希 《核聚变与等离子体物理》 CAS CSCD 北大核心 2004年第1期15-18,共4页
用蒙特卡罗方法,利用MCNP3B编码计算了HL 2A装置芯部离子温度为5keV、离子密度为5×1013cm-3的DD热核聚变中子产额的空间分布,以及高场边A、低场边D、偏滤器的B和C点所在位置各种能量的中子辐射通量和平均通量。计算了由于D+D→P+T... 用蒙特卡罗方法,利用MCNP3B编码计算了HL 2A装置芯部离子温度为5keV、离子密度为5×1013cm-3的DD热核聚变中子产额的空间分布,以及高场边A、低场边D、偏滤器的B和C点所在位置各种能量的中子辐射通量和平均通量。计算了由于D+D→P+T反应产生氚,在10%的氚与氘发生DT反应产生中子的条件下,热核聚变中子的产额以及在A、B、C、D各位置通量发生的变化。计算结果为发展新的聚变中子诊断系统、辐射防护和环境评估提供了依据。 展开更多
关键词 HL-2A装置 热核聚变 dd中子 dt中子 蒙特卡罗方法 热核聚变 中子分布
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Achievement of Laser Fusion with High Energy Efficiency Using a Mixture of D and T Ions
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作者 A. Youssef M. Haparir 《Open Journal of Energy Efficiency》 2016年第2期48-58,共11页
A mixture of deuterium (D) and tritium (T) is the most likely fuel for laser-driven inertial confinement fusion (ICF) reactors and hence DD and DT are the fusion reactions that will fire these reactors in the future. ... A mixture of deuterium (D) and tritium (T) is the most likely fuel for laser-driven inertial confinement fusion (ICF) reactors and hence DD and DT are the fusion reactions that will fire these reactors in the future. Neutrons produced from the two reactions will escape from the burning plasma, in the reactor core, and they are the only products possible to be measured directly. DT/DD neutron ratio is crucial for evaluation of T/D fuel ratio, burn control, tritium cycle and alpha particle self-heating power. To measure this ratio experimentally, the neutron spectra of DD and DT reactions have to be measured separately and simultaneously under high neutron counting with sufficient statistics (typically within 10% error) in a very short time and these issues are mutually contradicted. That is why it is not plausible to measure this high priority ratio for reactor performance accurately. Precise calculations of the DT/DD neutron ratio are needed. Here, we introduce such calculations using a three dimensional (3-D) Monte Carlo code at energies up to 40 MeV (the predicted maximum ion acceleration energy with the available laser systems). In addition, the fusion power ratio of DD and DT reactions is calculated for the same energy range. The study indicates that for a mixture of 50% deuterium and 50% triton, with taking into account the reactions D(d,n)<sup>3</sup>He and T(d,n)<sup>4</sup>He, the optimum energy value for achieving the most efficient laser-driven ICF is 0.08 MeV. 展开更多
关键词 Inertial Confinement Fusion (ICF) dt Burning Plasma dt/dd neutron ratio Fusion Power ratio
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