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An integrated digital framework for the design build and operation of fusion power plants

机译:用于聚变电站设计建造和运营的集成数字框架

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摘要

The development of a commercial fusion power plant presents a unique set of challenges associated with the complexity of the systems, the integration of novel technologies, the likely diversity and distribution of the organizations involved, and the scale of resources required. These challenges are reviewed and compared to those for other complex engineering systems. A framework for creating a digital environment that integrates research, test, design and operational data is discussed and is based on combining the integrated nuclear digital environment (INDE), proposed recently for nuclear fission power plants, with the hierarchical pyramid of test and simulation used in the aerospace industry. The framework offers the opportunity to plan modelling strategies that allow large design domains to be explored prior to optimizing a detailed design for construction; and in this context, the relationship between measurements and predictions are explored. The use of the framework to guide the socio-technical activity associated with a distributed and collaborative design process is discussed together with its potential benefits and the technology gaps that need to be addressed in order to realize them. These benefits include shorter development times, reduced costs and improvements in credibility, operability, reliability and safety.
机译:商业聚变电厂的发展提出了一系列独特的挑战,这些挑战涉及系统的复杂性,新技术的集成,所涉组织的可能的多样性和分布以及所需的资源规模。对这些挑战进行了回顾,并与其他复杂工程系统的挑战进行了比较。讨论了创建一个将研究,测试,设计和运营数据集成在一起的数字环境的框架,该框架基于最近针对核裂变电厂提出的集成核数字环境(INDE)与使用的测试和模拟的分层金字塔相结合在航空航天业。该框架提供了计划建模策略的机会,该策略允许在优化详细的施工设计之前先探索大型设计领域。在这种情况下,探讨了测量与预测之间的关系。讨论了使用该框架指导与分布式和协作设计过程相关的社会技术活动,以及该框架的潜在利益和实现这些缺陷所需要解决的技术空白。这些好处包括缩短开发时间,降低成本并提高可信度,可操作性,可靠性和安全性。

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