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Overview of the Large Helical Device project

机译:大型螺旋设备项目概述

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The Large Helical Device (LHD) has successfully started running plasma confinement experiments after a long construction period of eight years. During the construction and machine commissioning phases, a variety of milestones were attained in fusion engineering which successfully led to the first operation, and the first plasma was ignited on 31 March 1998. Two experimental campaigns were carried out in 1998. In the first campaign, the magnetic flux mapping clearly demonstrated a nested structure of magnetic surfaces. The first plasma experiments were conducted with second harmonic 84 and 82.6 GHz ECH at a heating power input of 0.35 MW. The magnetic field was set at 1.5 T in these campaigns so as to accumulate operational experience with the superconducting coils. In the second campaign, auxiliary heating with NBI at 3 MW has been carried out. Averaged electron densities of up to 6 ×10~19 m~(-3), central temperatures ranging from 1.4 to 1.5 KeV and stored energies of up to 0.22 MJ have been attained despite the fact that the impurity level has not yet been minimized. The obtained scaling of energy confinement time has been found to be consistent with the ISS95 sxaling law with some enhancement.
机译:经过八年的漫长建设,大型螺旋装置(LHD)已成功开始进行等离子体限制实验。在建造和机器调试阶段,聚变工程取得了一系列里程碑式的成功,从而成功进行了首次运行,并于1998年3月31日点燃了第一台等离子体。1998年进行了两次实验。磁通图清楚地表明了磁性表面的嵌套结构。第一次等离子体实验是在输入功率为0.35 MW的二次谐波84和82.6 GHz ECH上进行的。在这些活动中,将磁场设置为1.5 T,以积累超导线圈的操作经验。在第二项活动中,使用3兆瓦的NBI进行了辅助加热。尽管杂质水平尚未达到最小,但平均电​​子密度高达6×10〜19 m〜(-3),中心温度为1.4至1.5 KeV,存储能量高达0.22 MJ。已经发现,获得的能量约束时间的缩放比例与ISS95 sxaling定律相一致,但有所增强。

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