首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Control of divertor heat load by Ar injection with keeping high performance in ELMy H-mode plasmas on JT-60U
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Control of divertor heat load by Ar injection with keeping high performance in ELMy H-mode plasmas on JT-60U

机译:通过在JT-60U上保持ELMy H型等离子体的高性能来通过Ar注入控制偏滤器的热负荷

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In ELMy H-mode plasmas of Japan Atomic Energy Research Institute Tokarnak-60 Upgrade, extension of a high confinement regime toward high density and high radiation-loss-power fraction has been investigated by Ar injection. With injecting Ar and putting the outer strike point on the top of divertor dome, confinement improvement, electron density, and radiation-loss-power fraction reached the ITER relevant regime; the thermal energy confinement time was as high as that the International Tokamak Experimental Reactor ELMy H-mode scaling IPB98 (y, 2), the electron density is similar to80% of the Greenwald density, and the radiation-loss-power fraction is similar to0.8. Although electron density profile is slightly peaked with Ar injection, the confinement improvement is mainly attributed to the improvement of ion transport. Moreover, the maximum divertor heat load due to ELMs has been reduced by a factor of 3-5 with keeping high confinement. ELM activity can be controlled by injecting Ar and changing the strike point position. (C) 2003 Elsevier Science B.V. All rights reserved. [References: 14]
机译:在日本原子能研究所Tokarnak-60 Upgrade的ELMy H型等离子体中,已经通过Ar注入研究了将高禁闭范围扩展到高密度和高辐射损耗功率比的方法。通过注入Ar并将外部打击点放在偏滤器圆顶的顶部,禁闭性改善,电子密度和辐射损耗功率比达到了ITER相关制度;热能约束时间与国际托卡马克实验堆ELMy H型定标IPB98一样长(y,2),电子密度接近格林瓦尔德密度的80%,辐射损耗功率比近似0 .8。尽管在注入氩气后电子密度分布略微达到峰值,但限制的改善主要归因于离子传输的改善。此外,在保持较高限制的前提下,由于ELM导致的最大偏滤器热负荷降低了3-5倍。可以通过注入Ar和更改击中点位置来控制ELM活动。 (C)2003 Elsevier Science B.V.保留所有权利。 [参考:14]

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