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Design of NBI Protection Plates of JT-60SA

https://repo.qst.go.jp/records/81688
https://repo.qst.go.jp/records/81688
4f45b728-25b4-4cac-aa72-c6b6bed3edbb
Item type 会議発表用資料 / Presentation(1)
公開日 2020-09-07
タイトル
タイトル Design of NBI Protection Plates of JT-60SA
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 Tsuru, Daigo

× Tsuru, Daigo

WEKO 919107

Tsuru, Daigo

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Iijima, Takaaki

× Iijima, Takaaki

WEKO 919108

Iijima, Takaaki

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Nakamura, Shigetoshi

× Nakamura, Shigetoshi

WEKO 919109

Nakamura, Shigetoshi

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Matsunaga, Go

× Matsunaga, Go

WEKO 919110

Matsunaga, Go

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Mogaki, Kazuhiko

× Mogaki, Kazuhiko

WEKO 919111

Mogaki, Kazuhiko

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Umeda, Naotaka

× Umeda, Naotaka

WEKO 919112

Umeda, Naotaka

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Ichikawa, Masahiro

× Ichikawa, Masahiro

WEKO 919113

Ichikawa, Masahiro

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Kojima, Atsushi

× Kojima, Atsushi

WEKO 919114

Kojima, Atsushi

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Dairaku, Masayuki

× Dairaku, Masayuki

WEKO 919115

Dairaku, Masayuki

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Kashiwagi, Mieko

× Kashiwagi, Mieko

WEKO 919116

Kashiwagi, Mieko

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Tsuru, Daigo

× Tsuru, Daigo

WEKO 919117

en Tsuru, Daigo

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Iijima, Takaaki

× Iijima, Takaaki

WEKO 919118

en Iijima, Takaaki

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Nakamura, Shigetoshi

× Nakamura, Shigetoshi

WEKO 919119

en Nakamura, Shigetoshi

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Matsunaga, Go

× Matsunaga, Go

WEKO 919120

en Matsunaga, Go

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Mogaki, Kazuhiko

× Mogaki, Kazuhiko

WEKO 919121

en Mogaki, Kazuhiko

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Umeda, Naotaka

× Umeda, Naotaka

WEKO 919122

en Umeda, Naotaka

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Ichikawa, Masahiro

× Ichikawa, Masahiro

WEKO 919123

en Ichikawa, Masahiro

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Kojima, Atsushi

× Kojima, Atsushi

WEKO 919124

en Kojima, Atsushi

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Dairaku, Masayuki

× Dairaku, Masayuki

WEKO 919125

en Dairaku, Masayuki

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Kashiwagi, Mieko

× Kashiwagi, Mieko

WEKO 919126

en Kashiwagi, Mieko

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抄録
内容記述タイプ Abstract
内容記述 This article introduced design work of NBI Protection Plates (NPP) of JT-60SA. The neutral beam is partially re-ionized by collision with environmental gas molecules, and the ionized beam is bended by the magnetic field, resulting in heat flux on the wall of the NBI duct, which includes NBI gate valve, NBI side bellows, port extension, vacuum vessel (VV) side bellows and port. The heat flux is estimated to be 0.5-3MW/m2 in the port and 0.2MW/m2 in the other areas, and its duration is 100s.
Considering the long-pulse high heat flux, NPP was installed in the NBI duct as a water-cooled thinner duct. Three types of NPP were designed for three types of NBI in the JT-60SA, i.e., perpendicular NBI (P-NBI), tangential NBI (T-NBI) and negative-ion NBI (N-NBI). The NBI duct was separated into three parts connected loosely with each other by two bellows. The designed NPP was separated into two or three parts along the beam line, which were overwrapped securing a sufficient gap considering the relative displacement with each other. The protection plates in the port area were designed as sets of narrow (~15cm) and long (~2m) cooling plates surrounding the neutral beam, to reduce the electro-magnetic force due to eddy current at the moment of the plasma disruption. The protection plates in other area were designed as sets of conical or columnar copper plates bonded to cooling pipes considering low magnetic field. Even the space in the NBI duct was very limited, the inner diameter of NPP was designed to be sufficiently large not to scrape the neutral beam.
Considering heat loads from the neutral and re-ionized beam, electro-magnetic force due to eddy current and acceleration due to earthquake and disruption, numerical analyses were carried out and it was confirmed the design of the NPP was reasonable.
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 31st Symposium on Fusion Technology (SOFT2020)
発表年月日
日付 2020-09-24
日付タイプ Issued
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