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Neutron shielding of the GDT (Novosibirsk) neutron generator project. A feasibility study

机译:GDT(新西伯利亚)中子发生器项目的中子屏蔽。可行性研究

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The paper presents results of extensive neutronic studies of the neutron source test facility based on the Novosibirsk Gas Dynamic Trap (GDT). The facility is to provide 10/sup 18/ DT-neutrons/s (over a continuous 10-year period) for material-test studies. The paper examines the protective-shield capacity,to ensure survival of GDT vital parts and suggests design modifications when survival is in jeopardy. The numerical studies used the 3D-AMC-VINIA Monte Carlo code with a precise computer representation of the sensitive parts of the facility. Intensity maps were plotted for neutron fluences, displacements, heat deposition, etc. Shielding feasibility has been ascertained, and the lifetime of consumable components ensured beyond the recommended values. A modification is suggested to extend the irradiation space at HARD neutron energy spectra to increase the volume to 1 m/sup 3/ with damage gradients >5%/cm. The design achieves neutron fluences close to 10/sup 14/ n/cm/sup 2/s (3.10/sup 22/ n/cm/sup 2/ end-of-life) in a<100 l test space.
机译:本文介绍了基于新西伯利亚气体动力阱(GDT)的中子源测试设施的大量中子研究结果。该设施将提供10 / sup 18 / DT中子/ s(连续10年)用于材料测试研究。本文研究了保护罩的能力,以确保GDT重要部件的生存,并提出了在生存受到威胁时进行设计修改的建议。数值研究使用了3D-AMC-VINIA蒙特卡洛代码,以及设施敏感部分的精确计算机表示。绘制了中子注量,位移,热沉积等的强度图。确定了屏蔽的可行性,并确保了消耗性组件的使用寿命超出建议值。建议进行修改以扩展HARD中子能谱处的辐照空间,以将体积增加到1 m / sup 3 /,且损害梯度> 5%/ cm。该设计在小于100 l的测试空间中实现了接近10 / sup 14 / n / cm / sup 2 / s(3.10 / sup 22 / n / cm / sup 2 /寿命终止)的中子注量。

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