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首页> 外文期刊>EPJ Web of Conferences >BENCHMARK EVALUATION OF REACTIVITY EFFECTS AND REACTIVITY COEFFICIENTS IN THE MOLTEN SALT REACTOR EXPERIMENT
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BENCHMARK EVALUATION OF REACTIVITY EFFECTS AND REACTIVITY COEFFICIENTS IN THE MOLTEN SALT REACTOR EXPERIMENT

机译:熔盐反应器实验中反应性效应和反应性系数的基准评价

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A set of benchmarks based on the experimental data from the Molten Salt Reactor Experiment (MSRE) is being compiled as part of International Reactor Physics Experiments Evaluation Reactor Physics Experiments Evaluation Project (IRPhEP). The initial benchmark that will be available in the 2019 edition of the IRPhEP handbook covers the first zero-power criticality experiment. Follow up benchmarks are under development based on the series of control rod calibration experiments performed at the MSRE, which consisted in progressive addition of a small amount (85g) of~(235)U in the salt followed by the insertion of the control rods acts to compensate for the excess reactivity insertion. Multiple reactivity effects and coefficients measurements are included in the benchmark: differential worth of a control rod, reactivity equivalent of~(235)U addition, control rod bank worth, reactivity effect of fuel circulation, isothermal temperature coefficient and fuel temperature coefficient. An uncertainty of 2% is attributed to the reported reactivity measurements from experimenters and it was believed that the uncertainty of reactor period measurement contributed the most of the experimental uncertainty. An additional 2% uncertainty was added to all reactivity measurements to represent the uncertainty for the correction factor applied to pull all the measurements on the same uranium concentration and this uncertainty was reasonably inferred by evaluating this factor on the MSRE benchmark model. The calculated reactivity equivalent of~(235)U additions (0.2228±0.0014, represented as the change of reactivity over the relative change of~(235)U mass in loop) matches well with the experiment value (0.223±0.006). Most of other calculations, including the control rod bank worth, reactivity effects of fuel circulation and isothermal and fuel temperature coefficients fall within one standard deviation from the experimental values as well.
机译:作为国际反应堆物理实验评估反应堆物理实验评估项目(IRPHEP)的一部分,正在编制一组基于熔盐反应器实验(MSRE)的实验数据的基准。 2019年版IRPHEP手册中可用的初始基准涵盖了第一个零功率临界实验。基于MSRE在MSRE上进行的系列控制杆校准实验的一系列控制杆校准实验正在开发后续基准,该试验在盐中逐步加入少量(85g)〜(235)u,然后插入控制杆作用补偿过量的反应性插入。在基准中包括多种反应性效应和系数测量值,控制杆的差分价值,反应性等同物〜(235)U添加,控制杆银行值,燃料循环的反应效果,等温温度系数和燃料温度系数。 2%的不确定性归因于报告的实验者的反应性测量,并且据信反应器周期测量的不确定性导致了大多数实验性的不确定性。向所有反应性测量中添加了另外2%的不确定性,以表示施加的校正因子的不确定性,以拉动相同铀浓缩的所有测量,并且通过评估MSRE基准模型来说是合理推断的这种不确定性。计算的反应性等当量(0.2228±0.0014,表示为在〜(235)U质量的相对变化上的反应性的变化)与实验值相匹配(0.223±0.006)。其中大多数计算,包括控制杆银行的价值,燃料循环和等温和燃料温度系数的反应性效应也落在了与实验值的一个标准偏差范围内。

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