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Accelerator-Based Nuclear Data Measurements for Nuclear Science and Technology

机译:基于加速器的核科学技术核数据测量

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Accelerator-development and new experimental techniques at accelerator-based neutron sources are at the heart of improvements of nuclear data for science and technology. An important driver is the new interest for safety estimates based on full uncertainty propagation as opposed to the exclusive use of safety margins based on expert judgment. Large scale modeling facilitated by the massive growth of computing power emphasize the importance of nuclear data uncertainties which are often the main contributor to performance uncertainty. Advanced reactor development with its emphasis on resource economy, minimization of high-level waste and improved safety is another important driver. Accelerator driven systems may prove essential new systems for closing the fuel cycle. Global security, emergency preparedness and safeguards change the focus towards fission and neutron- and gamma-induced yields that help forensics and detecting illegal activities The challenges for nuclear data lie in the systematic provision of uncertainties and covariances, the substantial improvement of well-known key quantities such as those addressed in the CIELO initiative (Collaborative International Evaluated Library Organisation) and addressing some of the elusive nuclear data for minor actinides which are essential in addressing the high-level waste issues. In the field of fission measurements spectacular new techniques provide a wealth of data that opening new avenues. An overview of recent developments is presented from leading facilities around the world with a short outlook of where these developments may take us.
机译:在基于加速器的中子源上进行加速器开发和新的实验技术,是改进科学技术核数据的核心。一个重要的驱动因素是对基于完全不确定性传播的安全性估计的新兴趣,而不是基于专家判断的排他性使用安全裕度。计算能力的巨大增长促进的大规模建模强调了核数据不确定性的重要性,而核数据不确定性通常是性能不确定性的主要原因。先进的反应堆开发,其重点是资源经济,最大限度地减少高放废物和提高安全性,这是另一个重要的推动力。加速器驱动系统可能证明是关闭燃料循环的必不可少的新系统。全球安全,应急准备和保障措施将重点转移到裂变,中子和伽马射线诱导的收益上,这有助于法医和发现非法活动。核数据的挑战在于系统地提供不确定性和协方差,众所周知的关键因素的实质性改进数量,例如CIELO倡议(国际协作图书馆评估组织)中处理的数量,以及一些次act系元素的难以捉摸的核数据,这些数据对于解决高放废物问题至关重要。在裂变测量领域,壮观的新技术提供了丰富的数据,这些数据开辟了新的途径。全球领先的机构对最新发展进行了概述,并对这些发展可能带给我们的前景进行了短暂展望。

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