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Seady-state natural circulation analysis with computational fluid dynamic codes of a liquid metal-cooled accelerator driven system

机译:液态金属冷却的加速器驱动系统的带有计算流体动力学代码的海洋状态自然循环分析

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摘要

A new innovative nuclear installation is under research in the nuclear community for its potential application to nuclear waste management and, above all, for its capability to enhance the sustainability of nuclear energy in the future as component of a new nuclear fuel cycle in which its efficiency in terms of primary Uranium ore profit and radioactive waste generation will be improved. Such new nuclear installations are called accelerator driven system (ADS) and are the result of a profitable symbiosis between accelerator technology, high-energy physics and reactor technology. Many ADS concepts are based on the utilization of heavy liquid metal (HLM) coolants due to its neutronic and thermo-physical properties. Moreover, such coolants permit the operation in free circulation mode, one of the main aims of passive systems. In this paper, such operation regime is analysed in a proposed ADS design applying computational fluid dynamics (CFD).
机译:核界正在研究一种新的创新性核装置,因为它有可能在核废料管理中应用,最重要的是,它有能力在未来作为新核燃料循环的一部分,增强核能的可持续性,在这种循环中其效率在铀原矿方面,利润和放射性废物的产生将得到改善。这种新的核装置称为加速器驱动系统(ADS),是加速器技术,高能物理和反应堆技术之间有利可图的共生的结果。由于其中子和热物理性质,许多ADS概念都基于重金属液态(HLM)冷却剂的利用。此外,这种冷却剂允许以自由循环模式运行,这是被动系统的主要目标之一。在本文中,在建议的ADS设计中应用了计算流体动力学(CFD)来分析这种运行方式。

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