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Absolute Measurement of β_(eff) Based on Rossi-α Experiments and the Two-Region Model in the IPEN/MB-01 Research Reactor

机译:基于Rossi-α实验和IPEN / MB-01研究堆中的两区域模型的β_(eff)绝对测量

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A new method for absolute measurement of the effective delayed neutron fraction β_(eff) based on Rossi-α experiments and the two-region model was developed at the IPEN/MB-01 Research Reactor facility. In contrast with other techniques such as the slope method, the Nelson-number method, and the ~(252) Cf-source method, the main advantage of this new methodology is to obtain the effective delayed neutron parameters in a purely experimental way, eliminating all parameters that are difficult to measure or calculate. In this way, Rossi-α experiments for validation of this method were performed at the IPEN/ MB-01 facility, and with the use of the present approach, β_(eff)was measured with a 1.46% uncertainty. In addition, the prompt neutron generation time A and other parameters were also obtained in an absolute experimental way. In general, the final results agree well with values from frequency analysis experiments. Comparison of theory and experiment reveals that JENDL-3.3 shows deviation for β_(eff) lower than 1%, which meets the desired accuracy for the theoretical determination of this parameter. This work supports the reduction of the ~(235)U thermal yield, as proposed by Okajima and Sakurai.
机译:在IPEN / MB-01研究堆设施上,开发了一种基于Rossi-α实验和两区模型绝对测量有效延迟中子分数β_(eff)的新方法。与其他方法(例如,坡度法,尼尔森数法和〜(252)Cf源法)相比,此新方法的主要优点是可以通过纯粹的实验方式获得有效的延迟中子参数,从而消除了所有难以测量或计算的参数。以此方式,在IPEN / MB-01设施上进行了Rossi-α实验以验证该方法,并使用本方法测得β_(eff)的不确定度为1.46%。另外,还以绝对实验方式获得了中子迅速产生时间A和其他参数。通常,最终结果与频率分析实验的值非常吻合。理论和实验的比较表明,JENDL-3.3的β_(eff)偏差小于1%,符合理论确定该参数所需的精度。这项工作支持了Okajima和Sakurai提出的〜(235)U热产率的降低。

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