在Caliban和Prospero金属堆芯裂变中子场中锕系元素裂变产物产率的测量

P. Casoli, N. Authier, J. Laurec, E. Baugé, T. Granier
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引用次数: 7

摘要

在20世纪70年代和80年代初,在CEA Valduc研究中心的设施上进行了一个实验项目,以测量几种锕系元素裂变产物的产量。特别是在Caliban和Prospero金属堆芯上完成了实验,以研究在{sup 233}U、{sup 235}U和{sup 239}Pu上的裂变-中子诱导反应。对厚的锕系元素样品进行辐照,用伽马能谱法测定每个裂变产物的核数。裂变室被同时照射,以测量同一种锕系元素的薄沉积层中的裂变次数。用质谱法和α谱法测定了厚样品和薄沉积物的质量。本文将首次全面介绍这些实验的结果。对Caliban和Prospero反应器的描述,它们的特性和性能,以及对实验方法的解释也将在文章中给出。最近已经完成了一项工作来分析和重新解释这些测量结果,特别是评估相关的不确定性。在这种情况下,还使用蒙特卡罗传输代码tripolii -4进行了计算,使用已发表的基准Caliban描述和普洛斯彼罗的三维模型,以确定引起裂变的平均中子能量。本文将讨论仿真结果。最后,将在Caliban和Prospero反应堆上提出新的裂变产率测量,以加强第一次实验的结果。(作者)«更少
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Measurements of Actinide-Fission Product Yields in Caliban and Prospero Metallic Core Reactor Fission-Neutron Fields
In the 1970's and early 1980's, an experimental program was performed on the facilities of the CEA Valduc Research Center to measure several actinide-fission product yields. Experiments were, in particular, completed on the Caliban and Prospero metallic core reactors to study fission-neutron-induced reactions on {sup 233}U, {sup 235}U, and {sup 239}Pu. Thick actinide samples were irradiated and the number of nuclei of each fission product was determined by gamma spectrometry. Fission chambers were irradiated simultaneously to measure the numbers of fissions in thin deposits of the same actinides. The masses of the thick samples and the thin deposits were determined by mass spectrometry and alpha spectrometry. The results of these experiments will be fully presented in this paper for the first time. A description of the Caliban and Prospero reactors, their characteristics and performances, and explanations about the experimental approach will also be given in the article. A recent work has been completed to analyze and reinterpret these measurements and particularly to evaluate the associated uncertainties. In this context, calculations have also been carried out with the Monte Carlo transport code Tripoli-4, using the published benchmarked Caliban description and a three-dimensional model of Prospero, to determine the average neutron energymore » causing fission. Simulation results will be discussed in this paper. Finally, new fission yield measurements will be proposed on Caliban and Prospero reactors to strengthen the results of the first experiments. (authors)« less
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