科技报告详细信息
OSMOSE program : statistical review of oscillation measurements in the MINERVE reactor R1-UO2 configuration.
Stoven, G. ; Klann, R. ; Zhong, Z. ; Nuclear Engineering Division
关键词: ACTINIDES;    ANL;    BENCHMARKS;    CEA CADARACHE;    CONFIGURATION;    FRANCE;    ISOTOPES;    MINERVE REACTOR;    NEUTRON SPECTRA;    NUCLEAR FUELS;    OSCILLATIONS;    PROCESSING;    REACTION KINETICS;    REACTOR PHYSICS;    SPECTRA;   
DOI  :  10.2172/925360
RP-ID  :  ANL-GEN-IV-078
PID  :  OSTI ID: 925360
Others  :  TRN: US0803045
学科分类:核能源与工程
美国|英语
来源: SciTech Connect
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【 摘 要 】

The OSMOSE program is a collaboration on reactor physics experiments between the United States Department of Energy and the France Commissariat Energie Atomique. At the working level, it is a collaborative effort between the Argonne National Laboratory and the CEA Cadarache Research Center. The objective of this program is to measure very accurate integral reaction rates in representative spectra for the actinides important to future nuclear system designs, and to provide the experimental data for improving the basic nuclear data files. The main outcome of the OSMOSE measurement program will be an experimental database of reactivity-worth measurements in different neutron spectra for the heavy nuclides. This database can then be used as a benchmark to verify and validate reactor analysis codes. The OSMOSE program (Oscillation in Minerve of isotopes in Eupraxic Spectra) aims at improving neutronic predictions of advanced nuclear fuels through oscillation measurements in the MINERVE facility on samples containing the following separated actinides: {sup 232}Th, {sup 233}U, {sup 234}U, {sup 235}U, {sup 236}U, {sup 238}U, {sup 237}Np, {sup 238}Pu, {sup 239}Pu, {sup 240}Pu, {sup 241}Pu, {sup 242}Pu, {sup 241}Am, {sup 243}Am, {sup 244}Cm, and {sup 245}Cm. The first part of this report provides an overview of the experimental protocol and the typical processing of a series of experimental results which is currently performed at CEA-Cadarache. In the second part of the report, improvements to this technique are presented, as well as the program that was created to process oscillation measurement results from the MINERVE facility in the future.

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