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The pulsed subcritical amplifier of neutron flux driven by high-intensity neutron generator

机译:高强度中子发生器驱动的中子通量脉冲亚临界放大器

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The subcritical reactor driven by external neutron source could apply as useful instrument for modern nuclear energy applications requiring high-level irradiation of different materials by the high-energy and high-intense neutron flux (e. g., nuclear waste transmutation, radiopharmaceutical production, etc.). The propagation of neutron pulses through the subcritical nuclear system was considered in the present paper. Simple homogeneous subcritical systems and a model of two-zone subcritical reactor were computationally investigated using Monte Carlo MCNP4c transport code. The propagation of one initial neutron pulse and series of one hundred neutron pulses through the presented subcritical nuclear models were simulated. In this study, the neutron multiplication factor, the neutron flux, the energy amplification factor, the total energy of neutrons in initial pulse, etc. were obtained and analyzed. The presented calculations have shown that the considered pulse subcritical systems can be successfully used as effective amplifiers of neutron flux from the initial source. The modeling results indicate that there is an achievement of a stable, high level of neutron flux caused by the accumulation of delayed neutrons from previous pulses in series of one hundred pulses for both homogeneous and heterogeneous systems.
机译:由外部中子源驱动的亚临界反应堆可作为现代核能应用的有用工具,这些应用需要通过高能和高强度中子通量对不同材料进行高水平辐射(例如核废料,变,放射性药物生产等)。 。本文考虑了中子脉冲通过亚临界核系统的传播。使用蒙特卡洛MCNP4c输运代码对简单的均质亚临界系统和两区亚临界反应器模型进行了计算研究。通过提出的亚临界核模型模拟了一个初始中子脉冲和一系列一百个中子脉冲的传播。本研究获得并分析了中子倍增因子,中子通量,能量放大因子,初始脉冲中子的总能量等。提出的计算表明,所考虑的脉冲亚临界系统可以成功地用作来自初始源的中子通量的有效放大器。建模结果表明,对于均质系统和非均质系统,由于前脉冲在一百个脉冲序列中积累的滞后中子而产生了稳定,高水平的中子通量。

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