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Measurement and Calculation of Helium Generation in Beryllium Pebbles Irradiated in EBR-II

机译:EBR-II辐照铍鹅卵石中氦生成的测量与计算

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Beryllium pebbles are being evaluated for their potential use as a neutron multiplier in fusion power reactors. Commercially available pebbles were irradiated in the Experimental Breeder Reactor II to study property changes and gas production. Helium production rates from fast neutron irradiation are significantly higher in beryllium than in other metals due to the low neutron energy threshold and large (n, 2n) 2alpha nuclear cross section. Furthermore, the ~9(Be)(n,alpha)~6 He (beta) reaction breeds ~6(Li), which has a high thermal neutron cross section for producing helium and tritium. Calculations of helium and tritium production were performed based on neutron dosimetry measurements. Stepped-anneal and total helium release measurements wer conducted on single and multiple beryllium pebbles, from two different suppliers, Brush Wellman and Nippon Gashi Co.-Japan. The measurements were conducted to determine the total helium content for comparison with predictions, and to determine the helium release characteristics as a function of time and temperature. These data are required for fusion reactor design. Sequential helium analyses were conducted over a temperature range from 500deg C to 1100deg C in approximately 100deg C steps. Observed helium release in both beryllium lots was nonlinear with time at each temperature interval, with each step being characterized by a rapid initial release rate, followed by a gradual slowing of the rate over time. Fractional helium release as a function of temperature was observed to be substantially different for the two lots.
机译:正在评估铍卵石的潜在用途作为融合电源反应堆中的中子倍增器。在实验室饲养反应器II中辐照市售鹅卵石,以研究性能变化和天然气生产。由于低中子能量阈值和大(N,2N)2Alpha核横截面,铍辐射的氦生产率比在其他金属中显着高于其他金属。此外,〜9(是)(n,α)〜6 He(β)反应品种〜6(li),其具有用于生产氦和氚的高热中子横截面。基于中子剂量测量测量进行氦气和氚产量的计算。从两种不同的供应商,刷子Wellman和Nippon Gashi Co.-日本进行单一和多种铍鹅卵石进行的踩退火和全氦释放测量。进行测量以确定与预测相比的总氦含量,并确定作为时间和温度的函数的氦释放特性。融合反应堆设计需要这些数据。在大约100℃的步骤中,在500℃至1100deg C的温度范围内进行顺序氦分析。观察到的铍批次在每个温度间隔中的时间是非线性的,每个步骤都具有快速的初始释放率,然后逐渐减慢速率随时间的速度减慢。由于两批,观察到作为温度的函数的分数氦释放基本上不同。

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