首页> 外文会议>International conference on the physics of reactors >STARTUP REACTIVITY ACCOUNTABILITY ATTRIBUTED TO ISOTOPIC TRANSMUTATIONS IN THE IRRADIATED BERYLLIUM REFLECTOR OF THE HIGH FLUX ISOTOPE REACTOR
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STARTUP REACTIVITY ACCOUNTABILITY ATTRIBUTED TO ISOTOPIC TRANSMUTATIONS IN THE IRRADIATED BERYLLIUM REFLECTOR OF THE HIGH FLUX ISOTOPE REACTOR

机译:归因于高通量同位素反应器的照射铍反射器中同位素传递的启动反应性问责制

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The objective of this study is to develop a methodology to predict the reactivity impact as a function of outage time between cycles of 3_He, 6_Li, and other poisons in the High Flux Isotope Reactor's (HFIR) beryllium reflector. The reactivity worth at startup of the HFIR has been incorrectly predicted in the past after the reactor has been shut-down for long periods of time. The incorrect prediction was postulated to be due to the erroneous calculation of 3_He buildup in the beryllium reflector. It is necessary to develop a better estimate of the start-of-cycle symmetric critical control element positions since if the estimated and actual symmetrical critical control element positions differ by more than $1.55 in reactivity (approximately one-half inch in control element startup position), HFIR is to be shutdown and a technical evaluation is performed to resolve the discrepancy prior to restart. 3He is generated and depleted during operation, but during an outage, the depletion of 3He ceases because it is a stable isotope. 3He is born from the radioactive decay of tritium, and thus the concentration of 3He increases during shutdown. The computer program SCALE, specifically the TRITON and CSAS5 control modules including the KENO V.A, COUPLE, and ORIGEN functional modules were utilized in this study. An equation relating the down time (td) to the change in symmetric control element position was generated and validated against measurements for approximately 40 HFIR operating cycles. The newly-derived correlation was shown to improve accuracy of predictions for long periods of down time.
机译:本研究的目的是开发一种方法,以预测高通量同位素反应器(HFIR)铍反射器中的3_HE,6_LI和其他毒物循环之间的中断时间的反应性影响。在长时间关闭反应器后,过去的HFIR启动的反应性值得不正确地预测。假定不正确的预测是由于铍反射器中的3_HE累积的错误计算。有必要开发对循环开始的对称关键控制元件位置的更好估计,因为估计和实际对称的关键控制元件位置在反应性中的差异超过1.55(在控制元件启动位置约为半英寸) ,将关闭HFIR,并执行技术评估以在重新启动之前解决差异。在操作期间产生并耗尽3HE,但在中断期间,3HE的耗竭暂停,因为它是稳定的同位素。 3HE诞生于氚的放射性衰减,因此在关闭期间3HE的浓度增加。计算机程序刻度,特别是在本研究中使用包括KENO V.A,耦合和ORIGRON功能模块的TRITON和CSAS5控制模块。生成将下降时间(TD)相关的等式,并针对大约40 HFIR操作循环的测量来生成和验证对称控制元件位置的变化。新导出的相关性被证明在长时间的长时间提高预测的准确性。

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