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Developing the advanced tokamak-recent progress at DIII-D

机译:在DIII-D上开发先进的托卡马克最新进展

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The DIII-D tokamak has made a remarkable series of contributions to the fusion science program. These contributions are due to the continual evolution of the experimental systems led by research results and technological developments. The recent completion of core and edge diagnostics allows comprehensive time-dependent profile data, including plasma current and rotation profiles to be available on each discharge. This data combined with rapid a MHD calculation of the flux surfaces is used to carry out extensive analysis between discharges (10-15 min cycle) and permits a shot-by-shot strategy to optimize research productivity. The control of the plasma internal profiles has emerged as key in developing advanced tokamak discharges. RF power has become a key tool in achieving this control. The DIII-D ECH system is presently being expanded to a capability of six MW level gyrotrons. The radiative divertor configuration has evolved as an effective tool for edge plasma management. The recent commissioning of the upper outer divertor cryopump and baffle along with the existing installation in the lower divertor has allowed understanding of the role of upper and lower divertors, double-null divertors, and the location of the X-point. This fall, installation of an upper inner cryopump and baffle will allow further investigation of the role of pumping of the private flux region of the high triangularity divertor.
机译:DIII-D Tokamak对融合科学计划制定了一个卓越的贡献。这些贡献是由于研究结果和技术发展领导的实验系统的持续演变。最近完成核心和边缘诊断允许全面的时间依赖性配置文件数据,包括等离子体电流和旋转轮廓可以在每个放电上可用。该数据与快速A MHD计算的通量表面的计算用于在放电(10-15分钟)之间进行广泛的分析,并允许逐次策略优化研究生产率。等离子体内部轮廓的控制已成为开发先进的托卡马克排放的关键。 RF Power已成为实现此控件的关键工具。目前,DIII-D ZH系统的能力扩展到六个MW水平陀螺仪的能力。辐射偏移器配置已进化为边缘等离子体管理的有效工具。最近的外部偏转器低温泵和挡板以及较低偏移器中的现有安装的调试已经允许了解上部和下部偏移,双零位的角色和X点的位置。这秋季,安装上内部低温泵和挡板将允许进一​​步研究泵送高三角形偏移器的私有磁通区的作用。

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