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Effect of high-energy neutron source on predicting the proton beam current in the ADS design

机译:高能中子源对ADS设计中质子束流预测的影响

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摘要

The accelerator-driven subcritical system (ADS) is driven by a neutron source from spallation reactions introduced by the injected proton beam. Part of the neutron source has energy as high as a few hundred MeV to a few GeV. The effects of high-energy source neutrons (E n ?>?20?MeV) are usually approximated by energy cut-off treatment in practical core calculations, which can overestimate the predicted proton beam current in the ADS design. This article intends to quantize this effect and propose a way to solve this problem. To evaluate the effects of high-energy neutrons in the subcritical core, two models are established aiming to cover the features of current experimental facilities and industrial-scale ADS in the future. The results show that high-energy neutrons with E n ?>?20?MeV are of small fraction (2.6%) in the neutron source, but their contribution to the source efficiency is about 23% for the large scale ADS. Based on this, a neutron source efficiency correction factor is proposed. Tests show that the new correction method works well in the ADS calculation. This method can effectively improve the accuracy of the prediction of the proton beam current.
机译:加速器驱动的亚临界系统(ADS)由中子源由注入的质子束引起的散裂反应驱动。中子源的一部分能量高达几百MeV到几GeV。在实际堆芯计算中,通常通过能量截止处理来估计高能源中子的影响(E n 20?MeV),这可能会高估ADS设计中预测的质子束电流。本文旨在量化此影响,并提出一种解决此问题的方法。为了评估高能中子在亚临界堆芯中的作用,建立了两个模型,旨在涵盖当前实验设施和未来工业规模ADS的特征。结果表明,En≥> 20 20 MeV的高能中子在中子源中所占比例很小(2.6%),但对于大规模ADS,它们对源效率的贡献约为23%。基于此,提出了一种中子源效率校正因子。测试表明,新的校正方法在ADS计算中效果很好。该方法可以有效地提高质子束流预测的准确性。

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