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DIII-D: Recent Physics Results, Implemented and Planned Hardware Upgrades

机译:DIII-D:最近的物理结果,已实施和计划的硬件升级

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During the last two years, the DIII-D tokamak has been operated for a total of 34 run weeks, during which significant advances have been achieved in many areas of plasma physics. This progress was only possible because of the improvements in the tools available to the DIII-D program to control and manipulate the plasma core and edge conditions. The important systems in this effort include the electron cyclotron (EC) system, the fast wave system (restarted after being sidelined for four years), 12 new internal coils, an upgraded plasma control system and a comprehensive set of turbulence diagnostics. The EC system's versatility was demonstrated by the various roles it played in the physics research program. It was used as a probe to demonstrate the "hybrid" plasmas are regulated by m=3/2 tearing modes, it was used to suppress the m=2/1 Neoclassical Tearing Mode, which allowed the plasma pressure to be raised to new heights, and in an active feedback mode EC power was used to control the q-profile using real-time equilibrium reconstructions based upon motional Stark effect data. The fast wave system was used in conjunction with the EC system for current profile experiments. The internal control coil system was used to investigate suppression of the resistive wall modes and reduction and/or elimination of ELMs. During this year, the DIII-D facility will implement major changes and upgrades to expand the frontiers in several of the areas of tokamak plasma physics research. One of the four neutral beams will be rotated from the co-to the counter-injection mode so that heated plasmas with little or no rotation can be studied. The present lower divertor will be removed and a new extended shelf divertor will be installed to provide the capability of pumping high triangular double null plasmas. Three new long pulse one MW class gyrotron systems will be brought on line, which will double the long pulse capability of the EC system. Two of the three aging cooling towers wi-ll be replaced with two new high efficiency towers that can handle the higher heat loads expected in the future from 10 s pulse operation. These and other improvements to the facility will be discussed and presented
机译:在过去的两年中,DIII-D托卡马克共运行了34个星期,在此期间,等离子体物理的许多领域都取得了重大进展。仅由于DIII-D程序可用于控制和操纵等离子体核心和边缘条件的工具的改进,才有可能取得这一进展。这项工作中的重要系统包括电子回旋加速器(EC)系统,快波系统(在被搁置四年之后重新启动),12个新的内部线圈,升级的等离子体控制系统和一整套湍流诊断程序。 EC系统在物理研究程序中扮演的各种角色证明了它的多功能性。它被用作探针来证明“混合”血浆受m / n = 3/2撕裂模式调节,被用于抑制m / n = 2/1新古典主义撕裂模式,从而使血浆压力达到提升到新的高度,并在主动反馈模式下,使用EC功率通过基于运动Stark效应数据的实时平衡重建来控制q轮廓。快速波系统与EC系统一起用于电流剖面实验。内部控制线圈系统用于研究电阻壁模式的抑制以及ELM的减少和/或消除。在今年,DIII-D设施将进行重大更改和升级,以扩大托卡马克等离子体物理研究领域的前沿领域。四个中性光束之一将从同向旋转模式转换为反向注入模式,以便可以研究很少旋转或不旋转的加热等离子体。当前的下部偏滤器将被拆除,新的扩展搁板偏滤器将被安装,以提供泵送高三角形双无效等离子体的能力。三个新的长脉冲一兆瓦级回旋管系统将投入生产,这将使EC系统的长脉冲能力提高一倍。三个老化的冷却塔中有两个 它将被替换为两个新的高效塔,这些塔可以处理未来10 s脉冲运行中预期的更高热负荷。将讨论和介绍该设备的这些和其他改进

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