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Blankets - key element of a fusion reactor -functions, design and present state of development

机译:毯子-聚变反应堆的关键要素-功能,设计和发展现状

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Blankets are key elements of a future fusion power reactor, as they breed the fusion fuel tritium, extract the heat from the reactor for power generation and contribute to the nuclear shielding of the plasma confining magnetic field coils. On the way to the engineering implementation of fusion, in particular the blanket design approach has changed substantially. Novel blanket designs require, already from the beginning, incorporating close coupling of plasma physics with engineering physics to develop robust solutions coping with thermal, mechanical and also electrodynamic loads - not only during the stationary operating phase, but also during transients. Simultaneously, nuclear licensing feasibility as well as component failure safety must be part of the design approach. This article describes advanced blanket design approaches undertaken in the past years by the example of the helium cooled pebble bed blanket (HCPB), aiming at an efficient blanket engineering design, starting from the development of modular integral reactor analysis tools, via design analysis and engineering validation of fabrication and interface performance, towards safety analysis on the reactor level.
机译:毯子是未来聚变动力反应堆的关键要素,因为它们会滋生聚变燃料tri,从反应堆中吸收热量以发电,并有助于对等离子体约束磁场线圈进行核屏蔽。在融合的工程实现方式上,特别是毯式设计方法已发生了很大变化。新颖的橡皮布设计从一开始就要求将等离子体物理与工程物理紧密结合,以开发出应对热,机械和电动负载的强大解决方案-不仅在固定操作阶段,而且在瞬态期间。同时,核许可的可行性以及组件故障的安全性必须成为设计方法的一部分。本文以氦冷却卵石床毯(HCPB)为例,介绍了过去几年采取的先进的毯设计方法,旨在通过设计分析和工程设计,从开发模块化整体反应器分析工具开始,进行高效的毯工程设计。验证制造和界面性能,以进行反应堆一级的安全分析。

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