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The “neutron channel design”—A method for gaining the desired neutrons

机译:“中子通道设计”-一种获得所需中子的方法

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The neutrons with desired parameters can be obtained after initial neutrons penetrating various structure and component of the material. A novel method, the “neutron channel design”, is proposed in this investigation for gaining the desired neutrons. It is established by employing genetic algorithm (GA) combining with Monte Carlo software. This method is verified by obtaining 0.01eV to 1.0eV neutrons from the Compact Accelerator-driven Neutron Source (CANS). One layer polyethylene (PE) moderator was designed and installed behind the beryllium target in CANS. The simulations and the experiment for detection the neutrons were carried out. The neutron spectrum at 500cm from the PE moderator was simulated by MCNP and PHITS software. The counts of 0.01eV to 1.0eV neutrons were simulated by MCNP and detected by the thermal neutron detector in the experiment. These data were compared and analyzed. Then this method is researched on designing the complex structure of PE and the composite material consisting of PE, lead and zirconium dioxide.
机译:具有所需参数的中子可以在初始中子穿透材料的各种结构和成分之后获得。在这项研究中,提出了一种新颖的方法“中子通道设计”,以获取所需的中子。它是通过采用遗传算法(GA)结合Monte Carlo软件而建立的。通过从紧凑型加速器驱动的中子源(CANS)获得0.01eV至1.0eV的中子来验证该方法。设计了一层聚乙烯(PE)缓和剂,并将其安装在CANS中铍靶材的后面。进行了中子探测的模拟和实验。利用MCNP和PHITS软件模拟了距PE慢化剂500cm处的中子光谱。在实验中,通过MCNP模拟了0.01eV至1.0eV的中子数,并通过热中子探测器进行了检测。这些数据进行了比较和分析。然后研究了设计聚乙烯的复杂结构以及由聚乙烯,铅和二氧化锆组成的复合材料的方法。

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