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Application of the modified neutron source multiplication method to the prototype FBR Monju

机译:改进的中子源倍增方法在FBR Monju原型中的应用

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The Modified Neutron Source Method (MNSM) is applied to the prototype FBR Monju. This static method to estimate the reactivity in sub-critical conditions has already given good results on commercial pressurized water reactors. The MNSM consists both in the extraction of the fundamental mode seen by a detector to avoid the effect of higher modes near sources, and the correction of flux distortion effects due to control rod movement between different reactor states. Among Monju's particularities that have a big influence on the MNSM factors are: the presence of two californium sources near the core and the position of the detector, which is located far from the core outside of the reactor vessel. The importance of spontaneous fission and (α, n) reactions, which have increased during the shutdown period of 15 years, will also be discussed. In order to evaluate the detector count rate, a propagation calculation has been conducted from the reactor vessel to the external detector. For two sub-critical states, an estimation of the reactivity has been made and compared to experimental data obtained in the restart experiments at Monju (2010). Results indicate a good agreement between the MNSM reactivity and the reactivity measured with other methods. The reactivity dependence of the correction to apply to the point kinetic equation is discussed.
机译:改进的中子源方法(MNSM)被应用于原型FBR Monju。这种估计亚临界条件下反应性的静态方法已经在商用压水反应堆上取得了良好的结果。 MNSM包括提取检测器所见的基本模式以避免源附近较高模式的影响,以及校正由于不同反应堆状态之间控制棒移动而引起的通量畸变影响。在Monju的特殊性中,对MNSM因素有很大影响的是:堆芯附近存在两个源,探测器的位置远离反应堆容器的堆芯。还讨论了自发裂变和(α,n)反应的重要性,自发裂变和(α,n)反应在15年的停机期间已增加。为了评估检测器计数率,已经进行了从反应堆容器到外部检测器的传播计算。对于两个亚临界状态,已对反应性进行了估算,并将其与在Monju(2010)的重启实验中获得的实验数据进行了比较。结果表明,MNSM反应性与其他方法测得的反应性之间具有良好的一致性。讨论了将校正应用于点动力学方程的反应性依赖性。

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