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Safety analysis of the DONES primary heat removal system

机译:Dones初级散热系统的安全分析

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The development of a neutron source able to reproduce the irradiation conditions typical of a nuclear fusion reactor, in order to test candidate structural materials, is the main goal of the Work Package Early Neutron Source (WPENS) of the EUROfusion action. This source, named Demo Oriented NEutron Source (DONES), is a facility where neutrons are produced by means of D-Li interactions. More in detail, a beam of 125 mA deuterium ions at the energy of 40 MeV strikes a lithium jet flowing in a purposely shaped channel in order to obtain an intense and stable neutron flux for the irradiation of material samples.In the framework of these activities, safety analyses are a key aspect in the DONES design and development. Among the postulated initiating events identified during the preliminary Failure Mode Analysis, the Loss of Flow Accident (LOFA) in the Primary Heat Removal System of the lithium loop, due to a trip of the electro-magnetic pump, is one of the most severe. In fact, the loss of lithium flow, combined with the failed stop of the accelerator, could lead to the destruction of the lithium flow channel in correspondence of the component named Back-Plate. For this reason, it has been chosen to investigate the LOFA adopting the deterministic system code RELAP5-3D.Results, obtained from this analysis, are critically discussed and compared with those obtained by a similar calculation carried out with MELCOR 1.8.6 code, in order to assess the RELAP5-3D capability of describing systems adopting lithium as working fluid.
机译:能够再现典型的核融合反应器的辐射条件的中子源的发展,以测试候选结构材料,是欧洲繁殖作用的工作包早期中子源(WPENs)的主要目标。这个源是名为Demo取向的中子源(Dones),是通过D-Li相互作用产生中子的设施。更详细地,在40meV的能量下,125 mA氘离子的光束撞击了在无意形通道中流动的锂射流,以获得用于照射材料样品的强且稳定的中子通量。在这些活动的框架中安全分析是捐赠设计和开发的关键方面。在初步故障模式分析期间鉴定的假设启动事件中,由于电磁泵的跳闸,锂回路的初级散热系统中的流动事故(LOFA)的损失是最严重的。实际上,锂流量的损失与加速器的失败停止结合,可能导致锂流动通道的破坏,以便与后板的组分对应。因此,已选择研究采用确定性系统代码RELAP5-3D的LOFA。从该分析中获得的结果是批判性讨论的,并将其与Melcor 1.8.6码的类似计算获得的那些进行比较。为了评估利用锂作为工作流体的系统的Relap5-3D能力。

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