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Decay heat experiment on thirty-two fusion reactor relevant materials irradiated bV 14-MeV neutrons

机译:bV 14-MeV中子辐照的32个聚变反应堆相关材料的衰变热实验

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摘要

Highly accurate calculation of decay heat is important in safety designs of fusion reactors against loss of coolant/flow accidents. To provide experimental data of decay heat needed for validation of the design calculations, a systematic decay heat experiment was performed. Thirty-two fusion reactor relevant materials were irradiated by 14-MeV neutrons, and delay heat produced in the materials was measured by the Whole Energy Absorption Spectrometer in a cooling time period from 1 min to 400 days with typical experimental errors of 6-10. Source neutron flux spectra at irradiation positions, which were needed for successive analyses, were determined. Lessons about sequential reactions, impurities, reactions induced by low energy neutrons and radiolysis which should be considered in activation analyses for fusion reactors were learned from the experimental analyses. The experimental data with the source neutron conditions are to be used for investigating the validity of decay heat calculation codes, activation cross section libraries and decay data libraries.
机译:在聚变反应堆的安全设计中,防止冷却剂/流动事故的损失,高度准确地计算衰减热非常重要。为了提供验证设计计算所需的衰变热的实验数据,进行了系统的衰变热实验。用14 MeV中子辐照32台聚变反应堆相关材料,并在1分钟至400天的冷却时间内用全能吸收光谱仪测量材料中产生的延迟热,典型实验误差为6-10。确定了连续分析所需的辐射位置的源中子通量谱。从实验分析中吸取了有关顺序反应,杂质,低能中子诱发的反应和辐射分解的教训,这些都应在聚变反应堆的活化分析中加以考虑。具有源中子条件的实验数据将用于研究衰变热计算代码,活化截面库和衰变数据库的有效性。

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