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An Evaluation of Through-Thickness Changes in Primary Damage Production in Commercial Reactor Pressure Vessels

机译:商业反应堆压力容器中初级损伤生产中的贯穿厚度变化的评价

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An extensive database of atomic displacement cascades in iron has been developed using the method of molecular dynamics (MD). More than 300 simulations have been completed at 100K with energies between 0.1 and 100 keV. This encompasses nearly all energies relevant to fission reactor irradiation environments since a 100 keV MD cascade corresponds to the average iron cascade following a collision with a 5.1 MeV neutron. Extensive statistical analysis of the database has determined representative average values for several primary damage parameters: the total number of surviving point defects, the fraction of the surviving point defects contained in clusters formed during cascade cooling, and a measure of the size distribution of the in-cascade point defect clusters. The cascade energy dependence of the MD-based primary damage parameters has been used to obtain spectrum-averaged defect production cross sections for typical fission reactor neutron energy spectra as a function of depth through the reactor pressure vessel. The attenuation of the spectrum-averaged cross sections for total point defect survival and the fraction of either interstitials or vacancies in clusters are quite similar to that for the NRT dpa. However, the cross sections derived to account for the energy dependence of the point defect cluster size distributions exhibit a potentially significant variation through the vessel. The production rate of large interstitial clusters decreases more rapidly than dpa whereas the production of large vacancy clusters is slower than dpa.
机译:使用分子动力学(MD)的方法开发了铁中原子位移级联的广泛数据库。超过300种模拟在100K的100K上完成,能量在0.1到100 keV之间。这包括几乎所有与裂变反应器照射环境相关的能量,因为100keV MD级联对应于与5.1 meV中子的碰撞之后的平均铁级联。数据库的广泛统计分析已经确定了几个主要损伤参数的代表性平均值:存活点缺陷的总数,级联冷却期间形成的簇中的存活点缺陷的分数,以及尺寸分布的尺寸分布的量度 - 卡斯卡缺陷集群。基于MD的初级损伤参数的级联能量依赖性用于获得典型裂变反应器中子能谱的光谱平均缺陷产生横截面,作为通过反应器压力容器的深度的函数。用于总点缺陷存活的光谱平均横截面的衰减和簇中间隙或空位的分数与NRT DPA相似。然而,导出的横截面解释为点缺陷簇尺寸分布的能量依赖性,其通过容器表现出潜在的显着变化。大型间隙簇的生产率比DPA更快地降低,而大型空位簇的产生比DPA慢。

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