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Simulation and Comparison of the Calorimeters Measuring the Nuclear Heating in the OSIRIS Reactor, with the TRIPOLI-4 Monte-Carlo Code

机译:用Tripoli-4 Monte-Carlo Code仿真和测量测量欧奥斯反应堆核加热量的仿真与比较

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Two calorimeter devices are used in the OSIRIS MTR reactor (CEA-Saclay center) for the nuclear heating measurements. The first one is a fixed five-stage calorimeter device. The second one is an innovative mobile probe called "CALMOS". The design of these devices is different (in particular their geometry), implying modifications on the local neutron and photon fluxes and hence on nuclear heating measured values. The measurements performed by the two calorimeter devices cannot directly be compared; this requires perfect irradiation conditions in the reactor core, especially for the core loading and the control element positions. Simulation is here a good help to perform a fully relevant comparison. In this paper, differences between calorimeter devices in terms of nuclear heating and particle fluxes are evaluated using the TRIPOLI-4 Monte-Carlo code. After a description of the OSIRIS reactor and the design of the two calorimeter devices, the nuclear heating calculation scheme used for simulation will be introduced. Different simulations and results will be detailed and analyzed to determine the calorimeter geometry impact on the measured nuclear heating.
机译:两种量热计装置用于Osiris MTR反应器(CEA-SACLAY CENTER)用于核加热测量。第一个是固定的五级卡路里计装置。第二个是一个名为“Calmos”的创新的移动探测。这些装置的设计是不同的(特别是它们的几何形状),暗示在本地中子和光子通量上的修改,因此在核加热测量值上。通过两个量热计器件执行的测量不能直接比较;这需要反应堆芯中的完美照射条件,特别是对于核心负载和控制元件位置。仿真在这里有很好的帮助来执行完全相关的比较。在本文中,使用Tripoli-4 Monte-Carlo Code评估了在核加热和粒子通量方面的量热计装置之间的差异。在Osiris反应器的描述和两个量热计器件的设计之后,将介绍用于仿真的核加热计算方案。将详细分析和分析不同的模拟和结果,以确定对测量核加热的热量计几何影响。

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