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首页> 外文期刊>Progress in Nuclear Energy >Advanced Gas-cooled reactors technology for enabling molten-salt reactors design - Estimation of coolant impact on neutronic performance
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Advanced Gas-cooled reactors technology for enabling molten-salt reactors design - Estimation of coolant impact on neutronic performance

机译:先进的气体冷却反应器技术,用于使熔盐反应堆设计 - 对冷却剂对中性性能的影响估算

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It has been shown that the Fluoride Salt-Cooled High-Temperature Reactors (FHR) can benefit from adopting some features of well-established Advanced Gas-cooled Reactors (AGR) technology pioneered in the United Kingdom. AGRs offer a number of technological advantages that can potentially speed up the development of FHRs, such as experience with operation at high temperatures, graphite moderated core, fuel design, on-line refuelling, and experience in manufacturing and construction of large concrete pressure vessels with steel liners. This paper summarises relevant information available in the open literature on AGR core operation and design, focusing on neutronic characteristics. The obtained information was used to test the capabilities of Monte Carlo code Serpent to reproduce fuel temperature coefficient of a typical AGR. Then, the paper presents a neutronic analysis of the impact of CO2 coolant substitution with molten salt (FLiBe). The results obtained from the analysis showed that Serpent accurately reproduces the value and behaviour of fuel temperature coefficient both for fresh and depleted fuel conditions. However, subsequent sensitivity and uncertainty analysis showed high uncertainties in the calculated fuel temperature coefficients. The change of the coolant results in significant variation of an AGR neutronic characteristics. The analysis suggests that the use of FLiBe salt as a coolant in AGR-type reactors introduces additional design challenges related to the uncertainties in nuclear data. This work summarises an initial stage of AGRESR project, which was aiming to review the AGR technology relevant to FHR development.
机译:已经表明,氟化物冷却的高温反应器(FHR)可以受益于采用良好的先进的晚期气冷反应堆(AGR)技术的一些特征。 AGRS提供了许多技术优势,可以加快FHRS的开发,例如在高温下运行的经验,石墨调节核心,燃料设计,在线加油和制造和建造大型混凝土压力容器的经验钢结构。本文总结了江酷核心操作和设计开放文学中可用的相关信息,重点是中性特征。所获得的信息用于测试Monte Carlo Code Serpent的能力,以重现典型agr的燃料温度系数。然后,本文提出了CO2冷却剂取代与熔盐(烤肉)的影响的中性分析。从分析中获得的结果表明,Serpent精确地再现燃料温度系数的值和行为,用于新鲜和耗尽的燃料条件。然而,随后的敏感性和不确定性分析在计算的燃料温度系数中显示出高的不确定性。冷却剂的变化导致农药特征的显着变化。该分析表明,在农业型反应堆中使用烤盐作为冷却剂引入了与核数据的不确定性相关的额外设计挑战。这项工作总结了Agresr项目的初始阶段,该项目旨在审查与FHR开发有关的农业技术。

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