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Validation of the ECART code for the safety analysis of fusion reactors

机译:验证用于聚变反应堆安全性分析的ECART规范

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摘要

Realistic calculation of the radiotoxic substances transport within a fusion facility requires a coupling among thermal-hydraulic, chemistry and aerosol-vapour models. The paper introduces the methodology adopted for the simulation of these phenomena with ECART, a code developed by a pool of Italian institutions with the support of European Union and EDF. In the past, this tool was successfully validated against the major source term tests applied to Light Water Reactor (LWR) safety and it is now employed in investigations about advanced LWRs and non-nuclear risk studies. It also contains information about chemical compounds involved in fusion reactor safety and simulates the related oxidation reactions. With regard to its application on fusion, a large validation activity was performed, mainly based on the analyses of experimental programs promoted inside the EURATOM Fusion Technology Programme. The correct simulation of main phenomena occurring in ICE and STARDUST facilities demonstrates the applicability of ECART in performing a realistic prediction of the whole sequence (thermal-hydraulics and dust transport) inside fusion plants.
机译:实际计算聚变设施内放射性物质的迁移量需要热工水力模型,化学模型和气溶胶模型之间的耦合。本文介绍了使用ECART模拟这些现象所采用的方法,ECART是由意大利机构在欧盟和EDF的支持下开发的代码。过去,该工具已针对轻水反应堆(LWR)安全性所使用的主要源术语测试成功进行了验证,现在已用于高级轻水堆和无核风险研究的调查中。它还包含有关聚变反应堆安全性中所涉及化合物的信息,并模拟相关的氧化反应。关于其在融合方面的应用,主要基于对EURATOM融合技术计划中推广的实验计划的分析,进行了大规模的验证活动。对ICE和STARDUST设施中发生的主要现象的正确模拟,证明了ECART在对融合工厂内部的整个序列(热工水力和粉尘输送)进行现实预测时的适用性。

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