首页> 外文会议>The Tenth International Symposium on Reactor Dosimetry, Sep 12-17, 1999, Osaka, Japan >A Comparison of the NRT Displacement Model and Primary Damage Formation Observed in Molecular Dynamics Cascade Simulations
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A Comparison of the NRT Displacement Model and Primary Damage Formation Observed in Molecular Dynamics Cascade Simulations

机译:分子动力学级联模拟中观察到的NRT位移模型和主要损伤形成的比较

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The method of molecular dynamics (MD) has been used to simulate atomic displacement cascades in iron with energies up to 50 keV. Since this corresponds to the damage energy of the average iron recoil from an elastic collision with a 2.3 MeV neutron, these simulations have reached well into the regime relevant to fast neutron irradiation. The final cascade damage state is that present when the PKA energy has been dissipated and atomic motion returns to a level characteristic of the irradiation temperature; this typically requires a simulation time of 10 to 20 ps. This state has been characterized in terms of several parameters: the total number of surviving point defects, the fraction of the surviving point defects contained in clusters, and the size distribution of the point defect clusters formed during the cooling of the cascade. The energy dependence of the MD primary damage parameters has been compared with values predicted by the industry-standard NRT secondary displacement model and spectrum-averaged values have been obtained for several relevant neutron energy spectra. The effect of neutron energy spectrum on total point defect survival is relatively weak, supporting the use of NRT dpa as a damage correlation parameter. However, a potentially significant spectrum dependence is observed in the point defect cluster size distributions.
机译:分子动力学方法(MD)已用于模拟能量高达50 keV的铁中的原子位移级联。由于这对应于与2.3 MeV中子发生弹性碰撞而产生的平均铁反冲力的破坏能量,因此这些模拟已经很好地进入了与快速中子辐照有关的范围。最终的级联损伤状态是当PKA能量耗散并且原子运动返回到辐照温度的水平特征时出现的状态。这通常需要10到20 ps的仿真时间。该状态已通过几个参数进行了表征:剩余点缺陷的总数,簇中包含的剩余点缺陷的比例以及在级联冷却期间形成的点缺陷簇的尺寸分布。已将MD主要损伤参数的能量依赖性与行业标准NRT次级位移模型预测的值进行了比较,并获得了多个相关中子能谱的光谱平均值。中子能谱对总点缺陷存活的影响相对较弱,支持使用NRT dpa作为损伤相关参数。然而,在点缺陷簇尺寸分布中观察到潜在的显着光谱依赖性。

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