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Long-term Behavior Science: The cornerstone approach for reliably assessing the long-term performance of nuclear waste

机译:长期行为科学:可靠评估核废料长期性能的基础方法

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摘要

High level waste (HLW) management requires being able to demonstrate the safety over geological timescales, typically 1 My. This can be made possible by using a rigorous, complex and iterative scientific approach called Long-term Behavior Science. The methodology relies on experiments and modelling. A large multi-scale approach is required and involves a mechanistic understanding of the key phenomena controlling the source term (i.e. the flux of radionuclides released from the waste as a function of time), as well as parametric studies, integrated and in situ tests. As a result, it is eventually possible to develop an operational model based on clever simplifications of a very complex reality, ensuring that predictions will always remain conservative despite conceptual and numerical uncertainties. Finally, predictive models must be validated based on the study of natural or archaeological analogues. In this paper, we show how this methodology can be applied by selecting examples of spent nuclear fuel and HLW glass.
机译:高放废物(HLW)管理要求能够证明地质时间范围内的安全性,通常为1 My。这可以通过使用严格的,复杂的和迭代的科学方法(称为长期行为科学)来实现。该方法学依赖于实验和建模。需要一种大型的多尺度方法,并且需要对控制源项的关键现象(即随时间变化从废物中释放出的放射性核素的通量)进行机械理解,并进行参数研究,综合和现场测试。结果,最终有可能在非常复杂的现实的巧妙简化的基础上开发一种运营模型,从而确保尽管存在概念和数值上的不确定性,但预测始终保持保守。最后,必须基于对自然或考古类似物的研究来验证预测模型。在本文中,我们展示了如何通过选择乏核燃料和高放废物玻璃的实例来应用这种方法。

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