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Thirty-minute plasma sustainment by real-time magnetic-axis swing for effective divertor-load-dispersion in the Large Helical Device

机译:通过实时磁轴摆动维持30分钟的等离子体,可有效地分散大型螺旋装置中的偏滤器负载

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摘要

Achieving steady-state plasma operation at high plasma temperatures is one of the important goals of worldwide magnetic fusion research. A high temperature of approximately 2 keV, and steady-state plasma-sustainment operation of the Large Helical Device (LHD) [O. Motojima, K. Akaishi, H. Chikaraishi et al., Nucl. Fusion 40, 599 (2000)] is reported. High-temperature plasmas were created and maintained for more than 30 min with a world record injected heating power of 1.3 GJ. The three-dimensional heat-deposition profile of the LHD helical divertor was modified and during long-pulse discharges it effectively dispersed the heat load using a magnetic-axis swing technique developed at the LHD. A sweep of only 3 cm of the major radius of the magnetic axis position (less than 1% of the major radius of the LHD) was enough to disperse the divertor heat load. The modification of the heat-load profile was explained well by field-line tracing. The steady-state plasma was heated and sustained mainly by hydrogen minority ion heating using ion cyclotron range of frequencies. The operation lasted until a sudden increase of radiation loss occurred, presumably because of wall metal flakes dropping into the plasma. The sustained line-averaged electron density was approximately 0.7?0.8×10^19 m^?3. The average input power was 680 kW, and the plasma duration was 31 min 45 s. This successful long operation shows that the heliotron configuration has a high potential as a steady-state fusion reactor.
机译:在高等离子体温度下实现稳态等离子体操作是全球磁聚变研究的重要目标之一。大型螺旋装置(LHD)的约2 keV高温和稳态等离子体维持操作[O. Motojima,K.Akaishi,H.Chikaraishi等,Nucl.Chem.Soc。 [Fusion 40,599(2000)]被报道。高温等离子体的产生和维持时间超过30分钟,注入的热功率高达1.3 GJ,创世界纪录。修改了LHD螺旋形偏滤器的三维热分布曲线,并在长脉冲放电期间使用了LHD开发的磁轴摆动技术有效地分散了热负荷。仅扫描磁轴位置的主半径的3 cm(小于LHD的主半径的1%)就足以分散偏滤器的热负荷。通过现场线追踪很好地解释了热负荷曲线的变化。使用离子回旋加速器的频率范围,主要通过少数氢离子加热来加热和维持稳态等离子体。该操作一直持续到辐射损失突然增加,这大概是由于壁金属薄片掉落到等离子体中所致。维持的线平均电子密度约为0.7≤0.8×10 ^ 19m ^≤3。平均输入功率为680 kW,等离子持续时间为31分45 s。这项成功的长期运行表明,作为稳态聚变反应堆,日光加速器配置具有很高的潜力。

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