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Molecular activated recombination in divertor simulation plasma on GAMMA 10/PDX

https://repo.qst.go.jp/records/72215
https://repo.qst.go.jp/records/72215
2fc89cf9-ba55-4547-a79a-52f45bc1ccaa
Item type 会議発表用資料 / Presentation(1)
公開日 2017-03-21
タイトル
タイトル Molecular activated recombination in divertor simulation plasma on GAMMA 10/PDX
言語
言語 eng
資源タイプ
資源タイプ識別子 http://purl.org/coar/resource_type/c_c94f
資源タイプ conference object
アクセス権
アクセス権 metadata only access
アクセス権URI http://purl.org/coar/access_right/c_14cb
著者 坂本, 瑞樹

× 坂本, 瑞樹

WEKO 711173

坂本, 瑞樹

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寺門, 明紘

× 寺門, 明紘

WEKO 711174

寺門, 明紘

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野尻, 訓平

× 野尻, 訓平

WEKO 711175

野尻, 訓平

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江角, 直道

× 江角, 直道

WEKO 711176

江角, 直道

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中嶋, 洋輔

× 中嶋, 洋輔

WEKO 711177

中嶋, 洋輔

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大木, 健輔

× 大木, 健輔

WEKO 711178

大木, 健輔

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市村, 和也

× 市村, 和也

WEKO 711179

市村, 和也

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福本, 正勝

× 福本, 正勝

WEKO 711180

福本, 正勝

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清水, 弘慈

× 清水, 弘慈

WEKO 711181

清水, 弘慈

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澤田, 圭司

× 澤田, 圭司

WEKO 711182

澤田, 圭司

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大野, 哲靖

× 大野, 哲靖

WEKO 711183

大野, 哲靖

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増崎, 貴

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WEKO 711184

増崎, 貴

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小波蔵, 純子

× 小波蔵, 純子

WEKO 711185

小波蔵, 純子

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吉川, 正志

× 吉川, 正志

WEKO 711186

吉川, 正志

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坂本 瑞樹

× 坂本 瑞樹

WEKO 711187

en 坂本 瑞樹

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中嶋 洋輔

× 中嶋 洋輔

WEKO 711188

en 中嶋 洋輔

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福本 正勝

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WEKO 711189

en 福本 正勝

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大野 哲靖

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WEKO 711190

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増崎 貴

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WEKO 711191

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抄録
内容記述タイプ Abstract
内容記述 Molecular activated recombination (MAR) leading to plasma detachment has been occurred by additional hydrogen gas injection to the divertor simulation plasma in the tandem mirror GAMMA 10/PDX. Recently, the divertor simulation experimental module (D-module) has been installed in the end region of the mirror device to make best use of a linear plasma device with plasma confinement, meaning that the ion temperature of the plasma exposed to the D-module is high (i.e. a few hundreds eV), which is comparable to the SOL ion temperature in ITER. Noted that ion energy of the plasma is distributed, meaning that condition of PSI is equivalent to that of the torus plasma from a viewpoint of hydrogen recycling.
The D-module consists of a rectangular box (0.5 m square and 0.7 m in length) with an inlet aperture (0.2 m in diameter) at the front panel and a V-shaped tungsten target inside the box. The target size is 0.3 m in width and 0.35 m in length. The open-angle of the V-shaped target can remotely be changed from 15 deg. to 80 deg. A normal setting is 45 deg. Thirteen Langmuir probes have been installed on the upper target plate and two probes have been installed between the V-shaped target and the inlet. The plasma is exposed to the target through the inlet aperture.
In this study, additional hydrogen gas was injected from the vicinity of the inlet to the target with a different feed rate for each plasma to control the neutral pressure inside the D-module, which was measured with an ASDEX gauge. The electron temperature decreased in a whole region of the plasma with increase in the pressure. The temperature near the corner of the V-shaped target decreased from ~ 20 eV to ~ 1 eV. At that time, a clear density roll-over was observed. A position of the density maximum moved to upstream of the plasma with increase in the pressure and the density near the corner of the target decreased to detach the plasma from the target. The detachment must be caused by MAR, since the ratio of H alpha intensity to H beta intensity, which is a good monitor of MAR occurrence, increased. Two dimensional measurement of the ratio using a fast camera with an interference filter showed that the dominant region of MAR moved to upstream of the plasma with increase in the pressure.
In order to estimate an effect of the angle of the target on detachment properties, pressure dependence of the plasma density was measured at the target angle of 30 deg., 45 deg. and 60 deg. The plasma density in front of the target increased once and then decreased with the pressure. It is found that this density roll-over occurred at a smaller amount of gas injection for a smaller target angle, suggesting that a local pressure near the corner of the target became higher at a smaller target angle due to the recycling effect of the V-shape.
会議概要(会議名, 開催地, 会期, 主催者等)
内容記述タイプ Other
内容記述 第22回制御核融合装置におけるプラズマ壁相互作用に関する国際会議
発表年月日
日付 2016-05-31
日付タイプ Issued
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