使用脉冲9Be(d,n)源,在0 ~ 200 ns的时间间隔内,钍组件中的237Np, 235U和239Pu裂变率。实验

S.P. Moo , M.T. Rainbow , A.I.M. Ritchie
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引用次数: 4

摘要

本文描述了在0.4 × 0.4 × 0.4 m3金属钍组件中进行的一系列积分脉冲中子实验,以便将与空间无关的反应速率与从使用渐近反应堆理论近似描述泄漏的代码中得出的计算反应速率进行直接比较。该技术依赖于对测量的与时空相关的反应速率进行傅里叶分解,并从中提取与基本三维傅里叶空间模式相对应的反应速率。测量的反应速率是335U、239Pu和237Np在平均能量为2.7 MeV的短- 10 ns中子爆发后的裂变速率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Time dependent 237Np, 235U and 239Pu fission rates in a thorium assembly during the interval 0 to 200 ns using a pulsed 9Be(d,n) source—I. Experiment

This paper describes a series of integral pulsed neutron experiments performed in a 0·4 × 0·4 × 0·4 m3 metallic thorium assembly in such a way as to allow direct comparison of space independent reaction rates with calculated reaction rates derived from a code which uses the asymptotic reactor theory approximation to describe leakage. The technique relies on the Fourier decomposition of measured space-time dependent reaction rates and the extraction from these of the reaction rate corresponding to the fundamental three-dimensional Fourier spatial mode. The reaction rates measured were the fission rates of 335U, 239Pu and 237Np following a short ∼ 10 ns) burst of neutrons with a mean energy of ∼ 2·7 MeV.

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