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Monitoring the Fast Neutrons in a High Flux: the Case for Pu Fission Chambers

机译:在高通量中监测快节奏:PU裂变室的情况

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Fission chambers are widely used for on-line monitoring of neutron fluxes in irradiation reactors. A selective measurement of a component of interest of the neutron flux is possible in principle thanks to a careful choice of the deposit material. However, measuring the fast component is challenging when the flux is high (up to 10~(15) n/cm~2/s) with a significant thermal component. The main problem is that the isotopic content of a material selected for its good response to fast neutrons evolves with irradiation, so that the material is more and more sensitive to thermal neutrons. Within the framework of the FNDS (Fast Neutron Detector System) project, we design tools that simulate the evolution of the isotopic composition and fission rate for several deposits under any given flux. In the case of a high flux with a significant thermal component, ~(242)Pu is shown after a comprehensive study of all possibilities to be the best choice for measuring the fast component, as long as its purity is sufficient. If an estimate of the thermal flux is independently available, one can correct the signal for that component. This suggests a system of two detectors, one of which being used for such a correction. It is of very high interest when the detectors must be operated up to a high neutron fluence.
机译:裂变室广泛用于辐照反应器中的中子通量的在线监测。由于仔细选择沉积材料,可能是最有可能的选择性测量中子磁通量的组件。然而,当磁通量高(高达10〜(15)n / cm〜2 / s具有显着的热成分时,测量快速部件是具有挑战性的。主要问题是,选择对快速中子的良好反应选择的材料的同位素含量随照射而发展,使得材料对热中子越来越敏感。在FNDS(快中子探测器系统)项目的框架内,我们设计了在任何给定的通量下模拟同位素组成和裂变率的演变的工具。在具有显着的热成分的高通量的情况下,在全面研究后,〜(242)PU显示所有可能性是测量快速分量的最佳选择,只要其纯度就足够了。如果对热通量的估计是独立可用的,则可以校正该组件的信号。这表明两个检测器的系统,其中一个检测器用于这种校正。当探测器必须操作到高中的流量时,它非常高。

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