Measurement of fission-rate distribution on a standard uranium shell

Dariush Azimi-Garakani, John Garnett Williams
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Abstract

Makrofol KG solid-state track recorders (SSTRs) are used to measure the absolute fission-rate distribution in the NISUS natural-uranium shell in the three orthogonal planes. The results show that the fission-rate ratios of the outer surface to the inner surface of the shell at different positions are not constant, contrary to the prediction from the ANISN one-dimensional transport code. The minimum and maximum fission-rate ratios in the NISUS uranium shell are 7.64±0.24 and 11.58±0.27 in the horizontal midplane at θ = 30° and θ = 180°, respectively (θ = 0° is the out-of-pile direction). These ratios are compared with that of the ANISN calculation which gives the value of 10.86. The discrepancy is because of the non-uniformity of thermal neutron source distribution in the graphite cavity block.

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标准铀壳上裂变速率分布的测量
采用Makrofol KG型固态径迹记录仪(SSTRs)测量了NISUS天然铀壳在三个正交平面上的绝对裂变速率分布。结果表明,壳层在不同位置的外表面与内表面的裂变速率比不是恒定的,这与ANISN一维输运程序的预测相反。在θ = 30°和θ = 180°时,NISUS铀壳的最小裂变速率比为7.64±0.24,最大裂变速率比为11.58±0.27 (θ = 0°为堆外方向)。将这些比率与ANISN计算的值进行比较,ANISN计算的值为10.86。这种差异是由于热中子源在石墨腔块中的分布不均匀造成的。
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