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首页> 外文期刊>Annals of nuclear energy >Computational validation of the fission rate distribution experimental benchmark at the JSI TRIGA Mark II research reactor using the Monte Carlo method
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Computational validation of the fission rate distribution experimental benchmark at the JSI TRIGA Mark II research reactor using the Monte Carlo method

机译:使用蒙特卡洛方法对JSI TRIGA Mark II研究堆的裂变速率分布实验基准进行计算验证

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A fission rate profile benchmark experiment has been performed at the jozef Stefan Institute TRIGA Mark II reactor. The measurements were made using absolutely calibrated miniature fission chambers developed and manufactured by the Commissariat a l'Energie Atomique et aux Energies Alternatives. The aim of the paper is to describe the experimental set-up, fission rate measurements and to present the detailed Monte Carlo computational model of the TRIGA reactor, which was constructed with as used to compute absolute fission rate distributions in the core at a fixed control rod position, taking into account the detailed description of the experimental configuration. The paper focuses on the extensive evaluation of experimental and calculational uncertainties and biases following the International Reactor Physics Experiment Evaluation Project methodology. A comparison between the measured and computed absolute reaction rates concludes the paper, with the agreement being within one sigma standard uncertainty. (C) 2017 Elsevier Ltd. All rights reserved.
机译:裂变速率分布基准实验已在约瑟夫·斯特凡研究所TRIGA Mark II反应堆中进行。测量是使用由能源委员会原子能和辅助能源替代公司开发和制造的绝对校准的微型裂变室进行的。本文的目的是描述实验装置,裂变率测量并介绍TRIGA反应堆的详细蒙特卡洛计算模型,该模型的构建是用来在固定控制下计算堆芯中的绝对裂变率分布杆的位置,要考虑到实验配置的详细说明。本文重点关注按照国际反应堆物理实验评估项目方法论对实验和计算不确定性和偏差进行的广泛评估。本文对测得的绝对反应速率与计算的绝对反应速率进行了比较,得出的结论是在一个西格玛标准不确定度之内。 (C)2017 Elsevier Ltd.保留所有权利。

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