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SPES3 Facility RELAP5 Sensitivity Analyses on the Containment System for Design Review

机译:SPES3设施RELAP5设计评审系统的遏制系统分析

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摘要

An Italian MSE R&D programme on Nuclear Fission is funding, through ENEA, the design and testing of SPES3 facility at SIET, for IRIS reactor simulation. IRIS is a modular, medium size, advanced, integral PWR, developed by an international consortium of utilities, industries, research centres and universities. SPES3 simulates the primary, secondary and containment systems of IRIS, with 1:100 volume scale, full elevation and prototypical thermal-hydraulic conditions. The RELAP5 code was extensively used in support to the design of the facility to identify criticalities and weak points in the reactor simulation. FER, at Zagreb University, performed the IRIS reactor analyses with the RELAP5 and GOTHIC coupled codes. The comparison between IRIS and SPES3 simulation results led to a simulation-design feedback process with step-by-step modifications of the facility design, up to the final configuration. For this, a series of sensitivity cases was run to investigate specific aspects affecting the trend of the main parameters of the plant, as the containment pressure and EHRS removed power, to limit fuel clad temperature excursions during accidental transients. This paper summarizes the sensitivity analyses on the containment system that allowed to review the SPES3 facility design and confirm its capability to appropriately simulate the IRIS plant.
机译:关于核裂变的意大利MSE研发计划是资金,通过ENEA,SIET的SPES3设施的设计和测试,虹膜反应器模拟。虹膜是由国际公用事业,行业,研究中心和大学开发的模块化,中等大小,高级,积分PWR。 SPES3模拟虹膜的主要,次级和遏制系统,1:100体积尺度,完全高度和原型热液压条件。 RELAP5码广泛用于支持设施的设计,以识别反应器模拟中的横向和弱点。在萨格勒布大学的FER,用RETAP5和哥特式耦合代码进行虹膜反应器分析。 IRIS和SPES3仿真结果之间的比较导致了模拟设计反馈过程,并通过设施设计逐步修改,最终配置。为此,运行一系列灵敏度案例以研究影响植物主要参数趋势的具体方面,因为容纳压力和EHRS去除功率,以限制意外瞬变期间的燃料包层温度偏移。本文总结了允许审查SPES3设施设计并确认其适当模拟IRIS工厂的能力的敏感性分析。

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