演示用氦冷分流器:设计的技术研究和实验验证

P. Norajitra, S. Antusch, H. Ritzhaupt‐Kleissl, L. Spatafora, V. Widak, R. Giniyatulin, V. Kuznetsov, I. Mazul, I. Ovchinnikov
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引用次数: 0

摘要

在欧盟电厂概念研究的框架内,卡尔斯鲁厄Forschungszentrum Karlsruhe (FZK)正在研究用于DEMO的模块化he冷却导流器概念。设计目标是达到至少10 MW/m2的热流密度。参考导流器的设计是基于钨瓦的使用,钨瓦被钎焊到由氦撞击射流冷却的W-1wt%La2O3制成的顶针上。目前的分流器工作方案的重点是制造和高热流密度钨原型模型试验,以证明设计的可制造性和性能。到目前为止,在Efremov的氦环和TSEFEY联合设备上,已经成功地进行了三次高热流通量的单指模型测试。对无锈斑钢9指模件的制作工艺进行了研究。第一次气体流动试验表明质量流量分布均匀,与计算结果吻合较好。这些初步测试结果证实了这一概念的性能,并为进一步开发材料和概念以及更综合的测试奠定了坚实的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
He-cooled divertor for DEMO: Technological studies and experimental verification of the design
A modular He-cooled divertor concept for DEMO is being investigated at Forschungszentrum Karlsruhe (FZK) within the framework of the EU power plant conceptual study. The design goal is to reach a heat flux of at least 10 MW/m2. The reference divertor design is based on the use of a tungsten tile which is brazed to a thimble made of W-1wt%La2O3 cooled by helium impingement jets. The current divertor work programme focuses on manufacture and high-heat-flux tests of prototypical tungsten mock-ups to demonstrate the manufacturability and the performance of the design. Till now three high-heat-flux test series on 1-finger mock-ups were successfully performed in a combined helium loop and TSEFEY facility at Efremov. Technological study on fabrication of a 9-finger module of stain less steel was carried out. First gas flow tests showed uniform mass flow rate distribution which agrees well with calculation results. These initial test results confirm the performance of this concept and serve as a strong basis for further development of the material and concept and more integrated testing.
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