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Repetitive pellet fuelling for high-density/steady-state operation on LHD

机译:LHD的高密度/稳态运行的重复颗粒加油

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A repetitive pellet injector has been developed and pellet refuelling experiments have been launched on the Large Helical Device (LHD) in a new regime characterized by high density steady state operation. In order to suppress the disturbance to the core plasma as much as possible, we employ relatively small and slow pellets. The size and velocity of the pellets are typically 2.5 mm in diameter and 250 m s(-1), respectively. The pellets were injected into neutral beam heated plasmas with repetition frequency of 10 Hz. The density rise Delta(n) over bar (e) per pellet is 1.5 x 10(19) m(-3) and the pellet penetration depth, which is normalized by the plasma minor radius, is typically less than 0.5. Quasi-steady-state operation was achieved at plasma parameters of (n) over bar (e) = 0.8 x 10(20) m(-3), T-e = T-i = 1.0 keV Repetitive pellet fuelling showed improved energy confinement compared with massive gas puff fuelling in the high density regime in common with previous transient pellet injection experiments, and it can sustain such an improved confinement property.
机译:已经开发出一种重复性的颗粒喷射器,并且已经在大型螺旋装置(LHD)上以一种以高密度稳态运行为特征的新机制启动了颗粒加油实验。为了尽可能地抑制对核心等离子体的干扰,我们采用了相对较小且较慢的颗粒。药丸的大小和速度通常分别为直径2.5 mm和250 m s(-1)。将粒料以10Hz的重复频率注入中性束加热的等离子体中。每个小球在棒(e)上的密度上升量Delta(n)为1.5 x 10(19)m(-3),通过等离子短半径归一化的小球穿透深度通常小于0.5。在等离子参数(n)超过bar(e)= 0.8 x 10(20)m(-3),Te = Ti = 1.0 keV时,达到了准稳态操作。与大体积气体相比,重复团粒燃料的能量限制得到改善与以前的瞬时药丸注入实验一样,在高密度条件下进行粉扑加油,它可以维持这种改善的封闭性能。

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