首页> 外文会议>Conference on physics of reactors >EXPERIMENTAL VALIDATION OF THE NEW CODE PACKAGE APOLLO3-SFR AGAINST ZPPR-10A EXPERIMENT FOR CRITICAL AND VOIDED CONFIGURATIONS
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EXPERIMENTAL VALIDATION OF THE NEW CODE PACKAGE APOLLO3-SFR AGAINST ZPPR-10A EXPERIMENT FOR CRITICAL AND VOIDED CONFIGURATIONS

机译:针对ZPPR-10A关键和无效配置的新代码包Apollo3-SFR的实验验证

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In order to accurately compute the ASTRID 4th generation Sodium Fast Reactor (SFR) prototype neutronic parameters, a new APOLLO3~® deterministic code is under development at CEA. It will be part of the APOLLO3-SFR package (set of nuclear data, solvers from the code, calculation schemes) dedicated to fast reactor studies. In this paper, an experimental validation of this package is carried out with both ECCO and TDT-generated cross-sections libraries provided from ERANOS2 and APOLLO3-SFR respectively. To do so, experiments realized in the ZPPR reactor, dedicated to large sodium fast breeder reactors are reproduced according to the corresponding benchmark available in the IRPhE database. The new INCA neutronic interface, also developed at CEA, was used to easily process the whole calculation from ZPPR geometry description of the experiments to APOLLO3~® computations. The results show satisfactory agreements for the critical model and sodium void effect experiments computed with the ECCO cross-section library and the TDT-generated one.
机译:为了准确计算ASTRID第四代钠快堆(SFR)原型中子学参数,CEA正在开发一种新的APOLLO3〜确定性代码。这将是致力于快速反应堆研究的APOLLO3-SFR软件包(核数据集,代码中的求解器,计算方案)的一部分。在本文中,使用由ERANOS2和APOLLO3-SFR分别提供的ECCO和TDT生成的截面库对该包装进行了实验验证。为此,根据IRPhE数据库中可用的相应基准,复制了专用于大型钠快中子增殖堆的ZPPR反应器中实现的实验。同样由CEA开发的新的INCA中子接口可用于轻松处理从实验的ZPPR几何描述到APOLLO3®®计算的整个计算。结果表明,对于使用ECCO截面库和TDT生成的库计算的临界模型和钠空隙效应实验,令人满意的协议。

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