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Development of a WCLL DEMO First Wall design module in the SYCOMORE system code interfaced with the neutronic one

机译:在SYCOMORE系统代码中与中子学接口的WCLL DEMO First Wall设计模块的开发

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The pre-conceptual design of the DEMOnstration reactors has already started and several tokamak configurations have to be tested to find the best design by exploring different design parameters. Fast simulations involving the different components behavior must be performed. Within the European framework, SYCOMORE (SYstem COde for MOdelling tokamak REactor) is developed by CEA for this purpose. The Breeding Blanket (BB) facing the plasma is a key component in DEMO ensuring tritium self-sufficiency, shielding against neutrons and heat extraction for electricity production. Several BB concepts are being studied, among which the Water Cooled Lithium Lead (WCLL) one. SYCOMORE includes several specific modules in Python linked together, one of which has been developed to define a suitable design of the WCLL Breeding Blanket and is presented in this paper.The method to define automatically the WCLL First Wall (FW) design using analytical design formulae starting from thermo-hydraulic and thermo-mechanical considerations as well as design criteria coming from Codes & Standards (C&S) is presented. Furthermore WCLL FW design obtained with SYCOMORE is compared to Finite Elements (FE) analyses of the DEMO WCLL BB.Finally, a coupling between thermo-mechanics and neutronics is implemented, several iterations are necessary to obtain a converged design. Neutronic block evaluates the radial build, the BB tritium production, and the nuclear heating in the FW and the Breeding Zone (used by thermo-mechanical block). Thermo-mechanical module gives the design data (FW thickness, compositions, etc.) to the neutronic block.
机译:DEMOnstration反应器的概念前设计已经开始,必须通过探索不同的设计参数对几种托卡马克构型进行测试,以找到最佳设计。必须执行涉及不同组件行为的快速仿真。在欧洲框架内,CEA为此目的开发了SYCOMORE(用于模拟托卡马克反应器的系统COde)。面向等离子体的育种毯(BB)是DEMO中的关键组成部分,可确保tri的自给自足,屏蔽中子并防止电产生热量。正在研究几种BB概念,其中一种是水冷锂铅(WCLL)。 SYCOMORE在Python中包含几个链接在一起的特定模块,其中一个已开发用于定义WCLL育种毯的合适设计,并在本文中进行了介绍。使用分析设计公式自动定义WCLL第一墙(FW)设计的方法介绍了从热工液压和热工机械方面的考虑,以及来自规范和标准(C&S)的设计标准。此外,将SYCOMORE获得的WCLL FW设计与DEMO WCLL BB的有限元(FE)分析进行了比较。最后,实现了热力学和中子学之间的耦合,需要多次迭代才能获得收敛的设计。中子学模块评估径向结构,BB production的产量以及FW和育种区(由热机械模块使用)中的核加热。热机械模块将设计数据(FW厚度,成分等)提供给中子模块。

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