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首页> 外文期刊>EPJ Web of Conferences >THE McSAFE PROJECT - HIGH-PERFORMANCE MONTE CARLO BASED METHODS FOR SAFETY DEMONSTRATION: FROM PROOF OF CONCEPT TO INDUSTRY APPLICATIONS
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THE McSAFE PROJECT - HIGH-PERFORMANCE MONTE CARLO BASED METHODS FOR SAFETY DEMONSTRATION: FROM PROOF OF CONCEPT TO INDUSTRY APPLICATIONS

机译:McSafe项目 - 基于高性能的蒙特卡罗安全示范方法:从概念证明到行业应用

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摘要

The increasing use of Monte Carlo methods for core analysis is fostered by the huge and cheap computer power available nowadays e.g. in large HPC. Apart from the classical criticality calculations, the application of Monte Carlo methods for depletion analysis and cross section generation for diffusion and transport core simulators is also expanding. In addition, the development of multi-physics codes by coupling Monte Carlo solvers with thermal hydraulic codes (CFD, subchannel and system thermal hydraulics) to perform full core static core analysis at fuel assembly or pin level has progressed in the last decades. Finally, the extensions of the Monte Carlo codes to describe the behavior of prompt and delay neutrons, control rod movements, etc. has been started some years ago. Recent coupling of dynamic versions of Monte Carlo codes with subchannel codes make possible the analysis of transient e.g. rod ejection accidents and it paves the way for the simulation of any kind of design basis accidents as an alternative option to the use of diffusion and transport based deterministic solvers. The H2020 McSAFE Project is focused on the improvement of methods for depletion considering thermal hydraulic feedbacks, extension of the coupled neutronic/thermal hydraulic codes by the incorporation of a fuel performance solver, the development of dynamic Monte Carlo codes and the development of methods to handle large depletion problems and to reduce the statistical uncertainty. The validation of the multi-physics tools developed within McSAFE will be performed using plant data and unique tests e.g. the SPERT III E REA test. This paper will describe the main developments, solution approaches, and selected results.
机译:现在,巨大的核心分析方法越来越多地使用巨额和廉价的计算机电力。在大型HPC中。除了经典的关键性计算之外,蒙特卡罗对扩散和运输核心模拟器的耗尽分析和横截面的应用还在扩大。此外,多物理代码通过用热液压码(CFD,子信道和系统热工水力)耦合蒙特卡洛求解器的发展,在燃料组件执行全芯静铁芯分析或管脚电平已进行在过去的几十年。最后,蒙特卡罗代码的扩展,以描述提示和延迟中子,控制杆运动等的行为已经开始。最近通过子信道代码的蒙特卡罗代码的动态版本的耦合可以分析瞬态。棒喷射事故和它铺平了任何类型设计基础事故的方式,作为使用扩散和传输的确定性求解器的替代方案。在H2020 McSAFE项目是专注于考虑温度液压反馈,由燃料性能解算器的加入,动态蒙特卡罗程序的开发和方法来处理的发展延伸耦合中子/热工水力代码,用于耗尽方法的改进大耗尽问题,减少统计不确定性。将使用植物数据和独特的测试来执行McSafe中开发的多物理工具的验证。 Spert III E REA测试。本文将描述主要的开发,解决方案方法和所选结果。

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