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The magnet system of Wendelstein 7-X stellarator in operation

机译:Wendelstein 7-X恒星机的磁体系统正在运行

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The Wendelstein 7-X stellarator (W7-X), one of the largest stellarator fusion experiments, will start the second plasma operation phase in August 2017 at the Max Planck Institute for Plasma Physics in Greifswald, Germany. The main objective of the experiment is to prove the reactor relevance of the stellarator design. Recently the inner wall shielding of the plasma vessel was completed in a 12 month break and a first, inertially cooled divertor has been installed. The coming plasma experiments can be executed with increased ECRH heating power up to 9 MW and a plasma pulse length up to 100 s limited by a total energy input of 80 MJ.The W7-X experiment has a superconducting magnet system with 50 non-planar and 20 planar coils grouped in five equal modules and electrically connected in seven circuits with 10 coils each. Seven power supplies provide individual coil currents in the seven circuits. Two normal conductive copper coil systems can be operated in parallel to the superconducting coils. The paper reports about the experiences with the superconducting magnet system during the first plasma operation phase, about the commissioning for the coming second phase and results from mechanical sensor evaluation.
机译:Wendelstein 7-X恒星发生器(W7-X)是最大的恒星发生器融合实验之一,将于2017年8月在德国格赖夫斯瓦尔德的马克斯·普朗克等离子体物理研究所开始第二个等离子体操作阶段。实验的主要目的是证明恒星发生器设计与反应堆的相关性。最近,在12个月的时间里完成了等离子体容器的内壁屏蔽,并安装了第一个惯性冷却的偏滤器。即将进行的等离子实验可通过增加ECRH加热功率至9 MW和等离子脉冲长度达100 s来执行,而总脉冲输入受80 MJ的限制。W7-X实验具有超导磁体系统,其中有50个非平面磁体20个平面线圈分为五个相等的模块,并以七个电路电连接,每个电路具有10个线圈。七个电源在七个电路中提供单独的线圈电流。两个普通的导电铜线圈系统可以与超导线圈并联运行。该论文报告了在第一等离子运行阶段中超导磁体系统的经验,即将到来的第二阶段的调试以及机械传感器评估的结果。

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