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Core impurity transport in Alcator C-Mod L-, I- and H-mode plasmas

机译:Alcator C-Mod L型,I型和H型等离子体中的核心杂质传输

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Core impurity transport has been investigated for a variety of confinement regimes in Alcator C-Mod plasmas from x-ray emission following injection of medium and high Z materials. In ohmic L-mode discharges, impurity transport is anomalous (D_(eff) >> D_(nc)) and changes very little across the LOC/SOC boundary. In ion cyclotron range of frequencies (ICRF) heated L-mode plasmas, the core impurity confinement time decreases with increasing ICRF input power (and subsequent increasing electron temperature) and increases with plasma current. Nearly identical impurity confinement characteristics are observed in Ⅰ-mode plasmas. In enhanced D_α H-mode discharges the core impurity confinement times are much longer. There is a strong connection between core impurity confinement time and the edge density gradient across all confinement regimes studied here. Deduced central impurity density profiles in stationary plasmas are generally flat, in spite of large amplitude sawtooth oscillations, and there is little evidence of impurity convection inside of r/a = 0.3 when averaged over sawteeth.
机译:在注入中等和高Z材料后,通过X射线发射对Alcator C-Mod等离子体中的各种限制机制进行了核心杂质传输的研究。在欧姆L型放电中,杂质传输是异常的(D_(eff)>> D_(nc)),并且在LOC / SOC边界上变化很小。在离子回旋加速器频率范围(ICRF)加热的L型等离子体中,堆芯杂质约束时间随ICRF输入功率的增加(以及随后电子温度的升高)而减少,并随等离子体电流的增加而增加。在Ⅰ型等离子体中观察到几乎相同的杂质限制特性。在增强的D_αH模式放电中,核心杂质限制时间要长得多。在本文研究的所有限制方案中,核心杂质的限制时间与边缘密度梯度之间都有很强的联系。尽管有大幅度的锯齿波振荡,但在固定等离子体中推论出的中心杂质密度分布通常是平坦的,并且几乎没有证据表明当对锯齿进行平均时,r / a = 0.3内的杂质对流。

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