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MODELLING OF X-RAY RADIOSCOPY FOR PHASE TOPOLOGY ESTIMATION DURING CORIUM SODIUM INTERACTION

机译:钙钠相互作用过程中用于相拓扑估计的X射线放射线照相建模

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In case of a severe accident scenario in a Sodium cooled Fast Reactor (SFR) such as the ASTRID demonstrator, the fuel might melt and interact with the coolant i.e. liquid sodium. This molten Fuel Coolant Interaction (FCI) can generate an energetic vapor explosion that can jeopardize the reactor structures. The yield of the vapor explosion is strongly dependent on the local distribution of the fragmented melt with respect to the local vapor fractions. The medium is composed of three phases, i.e. corium, liquid sodium and vapor sodium. Thus, a study of the three phase distribution within the system is a key to understand the extent of the explosion. PLINIUS-2, the future large mass experimental platform of CEA Cadarache will be dedicated to conducting experiments to understand the behavior of prototypic corium in case of severe accidents. In order to study these interactions, a high energy X-ray imaging system is being developed. This system consists of a 15 MeV Linear accelerator producing high energy X-rays with significantly high flux, which are attenuated as it passes through the highly dense test section. The transmitted radiation is detected and re-emitted as visible light by the GADOX screen coupled to the CMOS camera. Using this system to study the interaction between corium and sodium is particularly challenging due to the small corium particulates of the size of the order of 1 mm. The qualification of the foreseen radioscopy system on the visualization of such an interaction requires the development of physical phantoms. This paper presents the preliminary simulations of expected images of corium fragments in sodium, vapor bubbles and vapor film around the fragments. The simulations are carried out using a CEA Cadarache in-house tool MODHERATO, which produces radiographic images in satisfactory agreement with the real time imaging. The simulation of particles is based on the knowledge of interaction phenomenology gained from past experiments and on the statistical analysis of the size of corium particles formed. The models which, according to MODHERATO results, qualify to be detected and resolved, help manufacturing physical phantoms to conduct the experiments.
机译:在钠冷快堆(SFR)(例如ASTRID演示器)中发生严重事故的情况下,燃料可能会熔化并与冷却剂(即液态钠)相互作用。这种熔融的燃料冷却剂相互作用(FCI)会产生高能蒸气爆炸,这会危害反应堆结构。蒸气爆炸的产率在很大程度上取决于碎片状熔体相对于局部蒸气分数的局部分布。介质由三个相组成,即,钙,液体钠和蒸气钠。因此,研究系统内的三相分布是了解爆炸程度的关键。未来CEA Cadarache的大型实验平台PLINIUS-2将致力于进行实验,以了解发生严重事故时原型珊瑚的行为。为了研究这些相互作用,正在开发一种高能X射线成像系统。该系统由15 MeV线性加速器组成,该加速器产生具有高通量的高能X射线,并在通过高密度测试部分时被衰减。耦合到CMOS相机的GADOX屏幕检测到所传输的辐射并将其重新发出为可见光。由于该钙微粒的大小约为1毫米,因此使用该系统研究钙与钠之间的相互作用特别具有挑战性。在这种相互作用的可视化上可预见的放射线检查系统的鉴定要求开发物理模型。本文介绍了钠,蒸气气泡和碎片周围的蒸气膜中的钙碎片的预期图像的初步模拟。使用CEA Cadarache内部工具MODHERATO进行模拟,该工具可产生与实时成像令人满意的射线照相图像。颗粒的模拟基于从过去的实验中获得的相互作用现象学知识以及对形成的皮质颗粒大小的统计分析。根据MODHERATO结果,这些模型有资格被检测和解析,有助于制造人体模型来进行实验。

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