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TOWARDS AN IMPROVED BURNUP MEASUREMENT EQUIPMENT FOR SPENT FUEL ASSEMBLIES IN BELGIAN NUCLEAR POWER PLANTS

机译:在比利时核电站的燃料组件中改进的燃烧测量设备

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SCK?CEN is investigating experimental methods to assess their capability for burnup determination of spent fuel elements. This assessment is performed from an operator’s point of view, meaning that certain information like initial enrichment of the fuel element, the irradiation history and material composition can be taken into account for the assessment. The method in use in the Belgian Nuclear Power Plant of Doel is the so-called Fork Detector. The Fork Detector measures the passive neutron and gamma emission of a spent fuel element and can be used for the assessment of the burnup and Safeguards verification activities. An industry sponsored research project is ongoing to develop and validate a measurement system for the accurate determination of the average burnup, axial and radial burnup profile of a spent fuel assembly. Passive Gamma Spectroscopy was considered as the technology to be investigated and evaluated for a possible integration in a “Fork-like” measurement equipment. This paper summarizes the main findings of the projects and the conclusions that have been reached so far on the design of the new measurement device.
机译:SCK?CEN正在研究评估其燃烧燃料元件的燃烧的能力的实验方法。该评估是从运营商的观点来执行的,这意味着可以考虑到燃料元件的初始富集的某些信息,可以考虑评估。比利时核电站的DOER核电站的方法是所谓的叉探测器。叉式检测器测量废燃料元件的被动中子和伽马排放,可用于评估燃烧和保障核查活动。一个行业赞助研究项目正在进行开发和验证测量系统,以准确确定花费燃料组件的平均燃烧,轴向和径向燃烧型材。被动γ光谱被认为是要研究的技术和评估在“叉状”测量设备中的可能集成。本文总结了该项目的主要结果及对新型测量装置的设计迄今为止已达到的结论。

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