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Demonstration of suppression of dust generation and partial reduction of the hydrogen retention by tungsten coated graphite divertor tiles in LHD

机译:演示了用LHD涂覆钨的石墨偏滤器瓦抑制粉尘产生并部分减少氢保留的方法

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Three sets of tungsten coated graphite divertor tiles (VPS-W tiles) were installed in the closed helical divertor of the Large Helical Device (LHD) instead of the graphite divertor tiles in the 2012FY plasma campaign for examining the plasma wall interaction (PWI) with divertor plasma. The first wall panels and divertor tiles of the LHD consist of stainless steels (SUS316L) and graphite, respectively. The carbon based mixed-material deposition layer including a very small amount of Fe element has been formed on not only the divertor tiles but also the first walls near the divertor tiles through the PWI processes. Such a mixed layer often causes undesirable influences for maintaining a long pulse discharge in LHD, e.g., changing the particle recycling properties and dust generation. After the single plasma campaign of the 2012FY, we confirmed drastic suppression of the mixed-material deposition layer on the first wall panels just under the VPS-W tiles. On the other hand, carbon based mixed-material deposition layer was formed on the VPS-W tile surface, where the amount of the hydrogen retention was estimated to be over ~4?×?1021?H/m2. If we would want further suppression of the hydrogen retention on the VPS-W tiles, the plasma facing components should be replaced to a full metal wall to avoid formation of the carbon co-deposition layer.
机译:在2012FY等离子运动中,将三套镀钨的石墨偏滤器瓦(VPS-W瓦)安装在大型螺旋装置(LHD)的封闭螺旋偏滤器中,代替石墨偏滤器瓦,用于检查等离子壁相互作用(PWI)。偏滤器血浆。 LHD的第一块墙板和分流砖分别由不锈钢(SUS316L)和石墨组成。通过PWI工艺,不仅在偏滤器砖上而且在偏滤器砖附近的第一壁上已经形成了包括非常少量的Fe元素的碳基混合材料沉积层。这样的混合层经常引起不希望的影响,以保持LHD中的长脉冲放电,例如,改变颗粒的循环特性和产生灰尘。在2012FY的单一等离子运动之后,我们证实在VPS-W瓷砖下方的第一块墙板上大幅抑制了混合材料沉积层。另一方面,在VPS-W瓷砖表面上形成了碳基混合材料沉积层,据估计氢保留量超过〜4×××1021×H / m 2。如果我们想进一步抑制VPS-W瓷砖上的氢保留,则应将面向等离子体的组件更换为完整的金属壁,以避免形成碳共沉积层。

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