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Sensitivity of the neutron multiplication factor to gadolinium isotopes' nuclear data for light water reactor fuel assemblies in the peak reactivity burnup range

机译:中子倍增因子对峰反应器燃料组件中的钆同位素核数据的敏感性峰值反应性燃烧范围

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The reactivity of a fuel assembly including burnable absorbers can become the largest at low fuel burnup, so the accuracy of reactivity calculations for such systems is important. To investigate this issue, the impact of gadolinium isotopes' nuclear data on neutron multiplication factor k is quantified. Sensitivities of k to nuclear data are calculated from 0 to 20 GWD/t for a BWR 3 x 3 multicell model. Sensitivity to gadolinium-157 (n, gamma) cross section becomes the largest at the zero burnup. Sensitivity to gadolinium-155 (n, gamma) cross sections takes the two largest values and the second one is observed around fuel burnup where the reactivity reaches its peak. Sensitivities are also calculated for BWR and PWR assemblies, and similar trends are observed. Finally, nuclear data-induced uncertainties of k are quantified. Gadolinium-157 contribution is the largest at zero burnup, and gadolinium-155 contribution is relatively important around fuel burnup corresponding to the reactivity peak. (C) 2020 Elsevier Ltd. All rights reserved.
机译:包括可燃吸收剂的燃料组件的反应性可以变得最大的低燃料燃烧,因此这种系统的反应性计算的准确性很重要。为了调查这个问题,量化了钆同位素的核数据对中子倍增因子K的影响。 k对核数据的敏感性由0到20 GWD / T计算为BWR 3 x 3多元模型。对钆-157(n,伽马)横截面的敏感性变为零燃烧的最大。对钆-155(n,γ)横截面的敏感性具有两个最大值,并且在燃料燃烧周围观察到第二个值,其中反应性达到其峰值。对于BWR和PWR组件也计算敏感性,并且观察到类似的趋势。最后,量化核数据诱导的K的不确定性。 Gadolinium-157贡献是零燃烧最大的贡献,钆-155贡献在对应于反应性峰值的燃料燃烧周围相对重要。 (c)2020 elestvier有限公司保留所有权利。

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