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A delayed neutron technique for measuring induced fission rates in fresh and burnt LWR fuel

机译:一种延迟中子技术,用于测量新鲜和燃烧的轻水堆燃料的诱发裂变率

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The LIFE@PROTEUS program at the Paul Scherrer Institut is being undertaken to characterize the interfaces between burnt and fresh fuel assemblies in modern LWRs. Techniques are being developed to measure fission rates in burnt fuel following re-irradiation in the zero-power PROTEUS research reactor. One such technique utilizes the measurement of delayed neutrons. To demonstrate the feasibility of the delayed neutron technique, fresh and burnt UO_2 fuel samples were irradiated in different positions in the PROTEUS reactor, and their neutron outputs were recorded shortly after irradiation. Fission rate ratios of the same sample irradiated in two different positions (inter-positional) and of two different samples irradiated in the same position (inter-sample) were derived from the measurements and compared with Monte Carlo predictions. Derivation of fission rate ratios from the delayed neutron measured signal requires correcting the signal for the delayed neutron source properties, the efficiency of the measurement setup, and the time dependency of the signal. In particular, delayed neutron source properties strongly depend on the fissile and fertile isotopes present in the irradiated sample and must be accounted for when deriving inter-sample fission rate ratios. Measured inter-positional fission rate ratios generally agree within 1
机译:Paul Scherrer研究所正在实施LIFE @ PROTEUS程序,以表征现代轻水堆中燃烧和新鲜燃料组件之间的界面。在零功率PROTEUS研究堆中进行再辐照后,正在开发测量燃烧燃料中裂变率的技术。一种这样的技术利用了延迟中子的测量。为了证明延迟中子技术的可行性,在PROTEUS反应堆的不同位置辐照了新鲜和燃烧的UO_2燃料样品,并在辐照后不久记录了它们的中子输出。从测量值中得出在两个不同位置(位置间)照射的同一样品和在同一位置(样品间)照射的两个不同样品的裂变率比,并将其与蒙特卡洛预测进行比较。从延迟的中子测量信号推导裂变率比需要针对延迟的中子源特性,测量设置的效率以及信号的时间依赖性来校正信号。特别地,延迟的中子源特性很大程度上取决于被辐照样品中存在的易裂变和可育同位素,并且在得出样品间裂变率比时必须考虑在内。测得的位置间裂变速率比与计算预测值通常在1

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