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公开(公告)号:EP2780913B1
公开(公告)日:2017-05-10
申请号:EP12808929.9
申请日:2012-11-14
发明人: TUSZEWSKI, Michel , BINDERBAUER, Michl , BARNES, Dan , GARATE, Eusebio , GUO, Houyang , PUTVINSKI, Sergei , SMIRNOV, Artem
IPC分类号: G21B1/05
CPC分类号: G21B1/052 , G21B1/15 , Y02E30/122
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公开(公告)号:EP3223284A1
公开(公告)日:2017-09-27
申请号:EP17169187.6
申请日:2012-11-14
发明人: TUSZEWSKI, Michel , BINDERBAUER, Michl , BARNES, Dan , GARATE, Eusebio , GUO, Houyang , PUTVINSKI, Sergei , SMIRNOV, Artem
IPC分类号: G21B1/05
CPC分类号: G21B1/052 , G21B1/15 , Y02E30/122
摘要: The present disclosure provides a method that facilitates the formation and maintenance of new High Performance Field Reversed Configurations (FRCs). The method comprises generating a magnetic field with a magnetic system coupled to a confinement chamber, diametrically opposed FRC formation sections, and divertors; gettering the confinement chamber and the divertors with a layer of gettering material; generating an FRC in each of the formation sections; and translating each FRC toward a midplane of the confinement chamber where the FRCs merge into a merged FRC. The method further comprises injecting neutral atom beams into the merged FRC from neutral atom beam injectors; injecting plasma into the merged FRC from axial plasma guns; and electrically biasing open flux surfaces of the merged FRC with one or more biasing electrodes.
摘要翻译: 本公开提供了便于新的高性能场反向配置(FRC)的形成和维护的方法。 该方法包括利用耦合到约束腔室的磁性系统产生磁场,径向相对的FRC形成部分和偏滤器; 用一层吸气材料去除约束室和偏滤器; 在每个形成部分中产生FRC; 并将每个FRC转换到FRC合并成FRC的密闭室的中平面。 该方法还包括从中性原子束注入器将中性原子束注入到合并的FRC中; 用轴向等离子体枪将等离子体注入合并的FRC中; 并用一个或多个偏置电极对合并的FRC的开放磁通表面进行电偏置。
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公开(公告)号:EP3223284B1
公开(公告)日:2019-04-03
申请号:EP17169187.6
申请日:2012-11-14
发明人: TUSZEWSKI, Michel , BINDERBAUER, Michl , BARNES, Dan , GARATE, Eusebio , GUO, Houyang , PUTVINSKI, Sergei , SMIRNOV, Artem
IPC分类号: G21B1/05
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公开(公告)号:EP2780913A2
公开(公告)日:2014-09-24
申请号:EP12808929.9
申请日:2012-11-14
发明人: TUSZEWSKI, Michel , BINDERBAUER, Michl , BARNES, Dan , GARATE, Eusebio , GUO, Houyang , PUTVINSKI, Sergei , SMIRNOV, Artem
IPC分类号: G21B1/05
CPC分类号: G21B1/052 , G21B1/15 , Y02E30/122
摘要: Systems and methods that facilitate the formation and maintenance of new High Performance Field Reversed Configurations (FRCs). An FRC system for the High Performance FRC (HPF) includes a central confinement vessel surrounded by two diametrically opposed reversed-field-theta-pinch formation sections and, beyond the formation sections, two divertor chambers to control neutral density and impurity contamination. A magnetic system includes a series of quasi-dc coils axially positioned along the FRC system components, quasi-dc mirror coils betweem the confinement chamber and the adjacent formation sections, and mirror plugs between the formation sections and the divertors. The formation sections include modular pulsed power formation systems that enable FRCs to be formed in-situ and then accelerated and injected (=static formation) or formed and accelerated simultaneously (=dynamic formation). The FRC system further includes neutral atom beam injectors, a pellet injector, gettering systems, axial plasma guns and flux surface biasing electrodes.
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