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An ontological approach to knowledge management for sustainable nuclear decommissioning

机译:用于可持续核退役的知识管理的本体论方法

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Nuclear decommissioning design and operational knowledge may remain relevant over many decades. Designing sustainable operations today requires meaningful simulation of future events, which in turn relies on the accurate representation of all relevant current knowledge. In decommissioning, human agents may be as important for maintaining operational safety as technical systems, so simulations must represent not just technical but tacit knowledge (embedded in practice) and the contextual and perceptual aspects of knowledge - i.e. how the meaning of data changes with the circumstances and viewpoint of stakeholders. We propose that this detail may be captured by ontological knowledge systems, which are augmenting traditional archives, databases or operational flowcharts in other highly interlinked, multidisciplinary, dynamic and highly specialised fields. Using the example of waste transport modelling, this study discusses how a coherent ontology unifying knowledge, physics and simulations could facilitate the design, assessment and communication of sustainable decommissioning.
机译:核退役设计和运行知识可能会持续数十年。设计当今的可持续运营需要对未来事件进行有意义的仿真,而仿真又取决于所有相关当前知识的准确表示。在退役中,人为因素对于维护操作安全与技术系统一样重要,因此模拟不仅必须代表技术知识,而且还应代表隐性知识(嵌入在实践中)以及知识的上下文和感知方面,即,数据的含义如何随技术的变化而变化。利益相关者的情况和观点。我们建议可以通过本体知识系统来捕获此细节,本体知识系统可以在其他高度互连,多学科,动态和高度专业化的领域中增加传统档案,数据库或操作流程图。以废物运输模型为例,本研究讨论了统一知识,物理和模拟的统一本体如何促进可持续退役的设计,评估和沟通。

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