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Rationale and method for design of DEMO WCLL breeding blanket poloidal segmentation

机译:DEMO WCLL繁殖毯状极向切分设计的原理和方法

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One of the most critical components in the design of DEMO Power Plant is the Breeding Blanket. Currently, four candidates are investigated as options for DEMO. One of these is the Water Coolant Lithium Lead Breeding Blanket. A new concept design has been proposed and investigated in 2015. The first activity driving the Breeding Blanket design was the definition of the poloidal segmentation. Current trend in breeding blanket design is based on the multi module box approach, which has advantages in terms of manufacturing, in reducing the global stress and strain during the start-up and the shut-down phases and during operation, because the favourable thermal expansions; and in simplifying the First Wall layout and integration. Nevertheless, drawbacks are identified, such as the reduction of Tritium Breeding Ratio, the constraints in manifold and in Back Supporting Structure design and integration because the limited space available. The present work concerns a method that, starting from these constraints, defines and optimizes some of the main design drivers for the selection of the segmentation of the Water Coolant Lithium Lead Breeding Blanket. The method by definition is based just on geometrical parameters because it is used as first step of the design when any analysis and detailed data are available. It is based on the definition of Figures Of Merits, consisting in numerical parameters, such as the ratio between the modules volume and the overall volume of segment assigned, the approximation between the real profile of the modules and the theoretical one, the form factor of the modules, the ratio between the module thickness at the mid-plane and the segment thickness at the same position. The figures of merits support the choice among different options. In particular two different solutions of poloidal segmentation have been compared and, according to the proposed method, the best one was chosen for the design of Water Coolant Lithium Lead Breeding Blanket. (C) 2017 Elsevier B.V. All rights reserved.
机译:孕育毯是DEMO电厂设计中最关键的组件之一。目前,有四个候选人被选为DEMO的选择。其中之一是水冷却锂铅育种毯。 2015年提出并研究了一种新的概念设计。推动繁殖毯子设计的第一个活动是多倍体分割的定义。繁殖毯设计的当前趋势是基于多模块盒方法,该方法在制造方面具有优势,可以减少启动和关闭阶段以及操作过程中的整体应力和应变,因为有利的热膨胀;并简化了第一墙的布局和集成。然而,由于有限的可用空间,发现了一些缺点,例如降低了t的繁殖率,歧管和后支撑结构设计和集成方面的限制。本工作涉及一种从这些约束出发,定义和优化一些主要设计驱动因素的方法,用于选择水冷却剂锂铅育种毯的分段。根据定义,该方法仅基于几何参数,因为当有任何分析和详细数据可用时,它将用作设计的第一步。它基于品质因数的定义,由数值参数组成,例如模块体积与分配的路段总体积之比,模块实际轮廓与理论轮廓之间的近似值,对于模块,在同一平面上的模块厚度与段厚度之间的比率。优点数字支持不同选项之间的选择。特别是,已经比较了两种不同的倍体分割解决方案,并根据提出的方法,选择了最佳的水冷却剂锂铅育种毯设计。 (C)2017 Elsevier B.V.保留所有权利。

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