DEMO导向器概念前设计的系统工程方法

D. Marzullo, D. Dongiovanni, J. You
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引用次数: 2

摘要

示范核聚变电站(DEMO)将是核聚变电站技术发展的关键一步。它代表了向商业核聚变发电厂迈出的第一步,负责展示相关技术的可行性。事实上,托卡马克子系统的开发必须考虑到接口、结构和功能要求以及多物理场问题,这些问题只有在设计过程的开发过程中才能完全了解。这导致了在概念设计过程中面临的困难,主要涉及到主要需求的确定、变更管理和子系统集成。系统工程方法旨在支持复杂系统在其生命周期内的设计和管理,从设计的早期阶段为客户需求和所需功能的定义提供系统的方法,以及为设计综合和系统验证提供系统的方法。在托卡马克子系统中,导向器是专门用于动力排气管理的子系统,同时也是在材料、技术和制造方面最具挑战性的组件之一。目前在欧洲融合联盟框架内进行的设计活动处于概念前阶段。尽管处于早期设计阶段,系统工程方法正在作为一个集成的、跨学科的研发工作被应用。因此,本文介绍了DEMO分流器概念设计的建模工作,旨在确定系统的主要功能和预期行为,并考虑到项目需求或当前技术解决方案可行性所施加的约束。为了在概念前阶段探索不同解决方案的可行性所需的设计灵活性,还研究了高层需求或接口可能发生的变化的影响。这也是通过将需求分配到受影响的组件并提供有效的可追溯性来实现的。因此,建议的建模方法旨在支持整个分流器概念设计阶段,允许需求识别、可追溯性和变更管理。
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Systems Engineering Approach for Pre-Conceptual Design of DEMO Divertor
The DEMOnstration Fusion power Plant (DEMO) will be a key step towards Fusion Power Plant technology. It represents the single step to a commercial fusion power plant, in charge of demonstrating the viability of relevant technologies. Indeed, the development of tokamak sub-systems has to take into account interface, structural and functional requirements and multi-physics issues that can be completely known only during the development of the design process. This leads to difficulties to be faced during the conceptual design, mainly related to the identification of the main requirements, the change management and the sub-system integration. The Systems Engineering approach aims to support the design and management of complex systems over their life-cycles, providing a systematic approach for the definition of customer needs and required functionality from the early stage of the design, as well as for the design synthesis and the system validation and verification. Among the tokamak sub-systems, the divertor is the one devoted to power exhaust management and represents, at the same time, one of the most challenging components, in terms of materials, technologies and manufacturing. Current design activities, conducted in the in the framework of EUROfusion Consortium are in a pre-conceptual phase. Despite the early design stage, a systems engineering approach is being applied as an integrated, interdisciplinary R&D effort. The paper therefore presents the modeling effort to the conceptual design of DEMO divertor aimed at identifying both system main functions and expected behavior, given the constraints imposed from either project requirement or from current viability of technological solutions. To allow for flexibility in design needed to explore the feasibility of different solutions at this pre-conceptual stage, the impact of possible changes in high level requirement or interfaces is also investigated. This is also achieved through the allocation of the requirements to the affected components and providing efficient traceability. Therefore, the proposed modelling approach is intended to support the whole divertor conceptual design stage, allowing for requirements identification, traceability and change management.
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