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RESULTS OF VERA APPLICATION TO THE AP1000 ? PWR STARTUP

机译:VERA应用于AP1000 的结果? pwr启动

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This paper describes the application of the Virtual Environment for Reactor Applications, VERA, under development by the Consortium for Advanced Simulation of LWRs (CASL) to the core physics analysis of the AP1000 PWR.The AP1000 PWR features an advanced first core with radial and axial heterogeneities which provides significant enhancements compared to traditional first cores, allowing best fuel usage and short transition to the equilibrium cycle with subsequent fuel reloads. These core advanced features can pose some challenges to the core physics tools making application of VERA to the AP1000 PWR first core especially relevant to qualify VERA performance.This paper focuses on the qualification efforts at hot zero power conditions, where Monte-Carlo reference solutions have also been established. In particular, the paper focuses on the comparison of the predictions obtained with VERA for the four AP1000 units that recently started up with the measured values. It is shown that there is excellent agreement between VERA and the key reactor physics parameters measured during the AP1000 startup.
机译:本文介绍了对反应堆应用,VERA的虚拟环境的应用,该联盟在AP1000 PWR的核心物理分析中对LWRS(CASL)的高级仿真进行了高级模拟。AP1000 PWR具有径向和轴向的高级第一核心与传统的第一核心相比,提供显着增强功能的异质性,允许随后的燃料重新加载到平衡周期的最佳燃料使用和短路转换。这些核心高级功能可能对核心物理工具构成一些挑战,使VERA应用于AP1000 PWR第一核心特别相关的核心,特别是与资格维拉性能相关。本文重点介绍了热零功率条件的资格工作,其中Monte-Carlo参考解决方案也成立了。特别是,本文侧重于使用最近从测量值启动的四个AP1000单元的VERA获得的预测的比较。结果表明,在AP1000启动期间测量的VIRA和关键反应器物理参数之间存在良好的一致性。

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