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Plasma characteristics of long-pulse discharges heated by neutral beam injection in the Large Helical Device

机译:大型螺旋装置中由中性束注入加热的长脉冲放电的等离子体特性

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Long-pulse neutral beam injection heating has been achieved in the large helical device (LHD). Two different confinement, states are observed for different averaged densities in the long-pulse plasmas. A quasi-steady-state plasma was sustained for 21 s with an injection power of 0.6 MW, where the central plasma temperature was around 1 keV with a line-averaged electron density of 0.3 x 10(19) m(-3). The discharge duration can be so extended as to keep the plasma properties in the short-pulse discharge. The energy confinement time is nearly the same as that of the short-pulse discharge, which is 1.3 times as long as the international stellarator scaling ISS95. At higher densities, a relaxation oscillation phenomenon, observed as if the plasma would breathe, lasted for 20 s with a period of 1-2 a. The phenomenon is characterized with profile expansion and contraction of the electron temperature. The density oscillation is out of phase with the temperature oscillation and is related to the density clamping phenomenon. The observed plasma properties are shown in detail for the 'breathing' oscillation phenomenon. Possible mechanisms for the breathing oscillation are also discussed, with a view of the screening effect near the last closed magnetic surface and the power balance between the heating and the radiation powers. The long-pulse heating results indicate unique characteristics of the LHD where no special feedback stabilization is required due to absence of disruption and no need for current drive. [References: 22]
机译:在大型螺旋装置(LHD)中实现了长脉冲中性束注入加热。在长脉冲等离子体中,对于不同的平均密度,观察到两种不同的限制状态。准稳态等离子体以0.6 MW的注入功率维持21 s,其中中央等离子体温度约为1 keV,线平均电子密度为0.3 x 10(19)m(-3)。可以延长放电持续时间以在短脉冲放电中保持等离子体性能。能量限制时间与短脉冲放电几乎相同,是国际恒星技术定标ISS95的1.3倍。在较高的密度下,观察到的松驰振荡现象(持续时间为1-2 a)持续了20 s,就像等离子体会呼吸一样。该现象的特征在于电子温度的轮廓膨胀和收缩。密度振荡与温度振荡异相,并且与密度钳制现象有关。对于“呼吸”振荡现象,详细显示了观察到的等离子体特性。鉴于最后一个封闭的磁性表面附近的屏蔽效果以及加热和辐射功率之间的功率平衡,还讨论了呼吸振荡的可能机制。长脉冲加热结果表明了LHD的独特特性,该LHD由于没有干扰并且不需要电流驱动,因此不需要特殊的反馈稳定。 [参考:22]

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