首页> 外文会议>International symposium on reactor dosimetry;ISRD-14 >Simultaneous Measurements of Nuclear Heating and Thermal Neutron Flux Obtained with the CALMOS-2 Measurement Device inside the OSIRIS Reactor
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Simultaneous Measurements of Nuclear Heating and Thermal Neutron Flux Obtained with the CALMOS-2 Measurement Device inside the OSIRIS Reactor

机译:使用OSIRIS反应堆内部的CALMOS-2测量设备同时测量核加热和热中子通量

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Nuclear heating inside a materials testing reactor needs to be known in order to design irradiation experiments that have to fulfill temperature constraints. To improve nuclear heating knowledge, an innovative calorimeter, CALMOS, has been studied, manufactured, and tested for the 70-MWth OSIRIS reactor operated by the French Alternative Energies and Atomic Energy Commission. This device is based on a mobile calorimetric probe that can be inserted in any in-core location and moved axially along the core height and above. Obtained results and advantages brought by the first CALMOS-1 equipment already have been presented. However, a thermal limitation in the cell did not allow the monitoring of nuclear heating up to the nominal power, and some significant discrepancies were observed at high heating levels between results deduced from the calibration and those obtained by the 'zero method.' Feedback-based, the new CALMOS-2 calorimeter has been designed both for extending the heating range up to 13 W.g-1 and for improving the 'zero method' procedure. In addition, the CALMOS-2 calorimeter is an operational measurement system, suited to characterize the radiation field evolution throughout the reactor cycle. To meet this requirement, a programmable system associated with specific software allows automatic cell mobility in the core, the acquisition of data and their processing. This paper presents an analysis of results collected during the 2015 measurement campaign carried out with the new prototype. The four-wire technique was tested up to about a 4 W.g-1 heating level and allowed to quantify discrepancies between 'zero' and calibration methods. Thermal neutron flux and nuclear heating measurements from CALMOS-1 and CALMOS-2 are compared. Thermal flux distributions, obtained with a self-powered neutron detector suited to the calorimeter, are compared with those obtained with current devices. Finally, the analysis emphasizes advantages brought by the human machine interface, which deeply refined the profiles definition.
机译:为了设计必须满足温度限制的辐射实验,需要知道材料测试反应堆内部的核加热。为了提高核加热知识,已经为法国替代能源和原子能委员会运营的70兆瓦OSIRIS反应堆研究,制造和测试了创新量热仪CALMOS。该设备基于可移动量热探针,可将其插入任何堆芯内位置,并沿堆芯高度及以上轴向移动。已经展示了第一台CALMOS-1设备带来的结果和优势。但是,由于电池的热限制,无法监测达到标称功率的核加热,并且在高加热水平下,从校准得出的结果与通过“零方法”获得的结果之间观察到一些显着差异。基于反馈的新型CALMOS-2量热仪旨在将加热范围扩展至13 W.g-1,并改善了“零方法”程序。此外,CALMOS-2量热仪是一种运行测量系统,适用于表征整个反应堆循环中辐射场的演变。为了满足此要求,与特定软件相关联的可编程系统允许核心中的自动单元移动性,数据的获取及其处理。本文对使用新原型进行的2015年测量活动期间收集的结果进行了分析。对四线技术进行了测试,直到加热到大约4 W.g-1的水平,并允许量化“零”方法和校准方法之间的差异。比较了CALMOS-1和CALMOS-2的热中子通量和核热测量结果。用适合于热量计的自供电中子探测器获得的热通量分布与现有设备获得的热通量分布进行比较。最后,分析强调了人机界面带来的优势,该界面深化了配置文件的定义。

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