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The TBM-CA configuration management approach for the ITER test blanket module - application to the HCLL TBS

机译:ITER测试毯模块的TBM-CA配置管理方法-应用于HCLL TBS

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The European Test Blanket Modules (EU-TBM) are first prototypes of a fusion reactor breeding blanket. They will be tested in dedicated equatorial ports n°16 of ITER. Technical developments are performed by a Consortium of European Associates (TBM-CA) and supported within the framework of F4E agency. Designing a complex nuclear system like TBM for ITER necessitates an organizational structure inside the consortium to manage in permanence the coherence between requirements (F4E technical and management specifications) and the TBM development through their life time. At the present stage, evolutionary nature of the design from the different teams is important. Highest priority is assigned to the Management support and Design Integration Team (MDIT) to perform an efficient control of the Configuration Management (CM). The TBM-CA CM comprises 4 main processes: a) identifying configuration of a product characteristics, including its interfaces (Configuration identification), b) controlling the evolution from agreed baseline (Configuration Control), c) creating the knowledge database in order to manage the information all along the lifecycle of the items (Configuration status accounting) and d) verifying the current configuration status of the items (Audits). CM is then a powerful tool to link the requirements for engineering, safety, quality assurance and test & acceptance activities. The application of the CM approach is illustrated through the case of TBM-HCLL (Helium Cooled Lithium Lead). The result shows that the proposed methodology and tools are suitable and provide quality solution for the items with a complex configuration such as TBM HCLL
机译:欧洲测试毯模块(EU-TBM)是聚变堆繁殖毯的首批原型。它们将在ITER的专用赤道端口n°16中进行测试。技术开发由欧洲联合会(TBM-CA)进行,并在F4E机构的框架内提供支持。为ITER设计一个类似TBM的复杂核系统,需要财团内部的组织结构永久性地管理需求(F4E技术和管理规范)与整个TBM开发之间的一致性。在目前阶段,来自不同团队的设计的进化性很重要。最高优先级分配给了管理支持和设计集成团队(MDIT),以对配置管理(CM)进行有效控制。 TBM-CA CM包含4个主要过程:a)识别产品特性的配置,包括其接口(配置标识),b)控制从商定基准的演变(配置控制),c)创建知识数据库以进行管理整个项目生命周期中的信息(配置状态统计)和d)验证项目(审核)的当前配置状态。 CM是连接工程,安全,质量保证以及测试和验收活动的需求的强大工具。通过TBM-HCLL(氦冷却锂铅)的案例来说明CM方法的应用。结果表明,所提出的方法和工具适用于TBM HCLL等具有复杂配置的项目,并为这些项目提供了优质的解决方案

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