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Development of fusion technology for DEMO in Forschungszentrum Karlsruhe

机译:卡尔斯鲁厄Forschungszentrum的DEMO融合技术的发展

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The Forschungszentrum Karlsruhe develops for more than 20 years fusion technologies and structural materials for ITER and ultimately for DEMO. While the technologies developed for ITER have reached some maturity, although not yet completed, the technologies and structural materials for DEMO need substantial progress before such a commercial prototype fusion reactor can be built. The main advances required beyond the technologies already developed for ITER are: the development of high temperature superconducting coils, a He or liquid metal cooled breeding blanket, a He-cooled divertor and the integration of the "In Vessel" components into a DEMO (Tokamak) reactor (a complex design task). In addition the development of suitable structural materials for the blanket and the divertor is an urgent task. These structural materials have to be of a low activation kind (decay to low activation level within ~100 years) and have to achieve a suitable lifetime (~5 years, i.e. ~150dpa) when used for DEMO blankets and divertor and when considering the large neutron affluence in DEMO. In all these fields the Forschungszentrum Karlsruhe is very active and in many cases a world leader.
机译:卡尔斯鲁厄Forschungszentrum Karlsruhe开发了20多年的融合技术和结构材料,用于ITER,并最终用于DEMO。尽管为ITER开发的技术已经达到一定的成熟度,尽管尚未完成,但用于DEMO的技术和结构材料需要大量的进步,然后才能建造这种商业原型聚变反应堆。除了已经为ITER开发的技术之外,所需的主要进步还包括:高温超导线圈的开发,He或液态金属冷却的育种毯,He冷却的分流器以及将“容器中”组件集成到DEMO(托卡马克)中)反应堆(复杂的设计任务)。另外,为毯子和分流器开发合适的结构材料也是紧迫的任务。这些结构材料必须是低活化类型的(在约100年内衰减至低活化水平),并且在用于DEMO毯子和分流器以及考虑到较大的使用寿命时必须达到合适的寿命(约5年,即约150dpa)。 DEMO中子富裕度。在所有这些领域中,卡尔斯鲁厄(Forschungszentrum Karlsruhe)都很活跃,在许多情况下都是世界领导者。

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