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首页> 外文期刊>Plasma physics and controlled fusion >Intermittent electron density and temperature fluctuations and associated fluxes in the Alcator C-Mod scrape-off layer
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Intermittent electron density and temperature fluctuations and associated fluxes in the Alcator C-Mod scrape-off layer

机译:Alcator C-MOM刮擦层中间歇电子密度和温度波动和相关助熔剂

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摘要

The Alcator C-Mod mirror Langmuir probe system has been used to sample data time series of fluctuating plasma parameters in the outboard mid-plane far scrape-off layer. We present a statistical analysis of one second long time series of electron density, temperature, radial electric drift velocity and the corresponding particle and electron heat fluxes. These are sampled during stationary plasma conditions in an ohmically heated, lower single null diverted discharge. The electron density and temperature are strongly correlated and feature fluctuation statistics similar to the ion saturation current. Both electron density and temperature time series are dominated by intermittent, large-amplitude burst with an exponential distribution of both burst amplitudes and waiting times between them. The characteristic time scale of the large-amplitude bursts is approximately 15 mu s. Large-amplitude velocity fluctuations feature a slightly faster characteristic time scale and appear at a faster rate than electron density and temperature fluctuations. Describing these time series as a superposition of uncorrelated exponential pulses, we find that probability distribution functions, power spectral densities as well as auto-correlation functions of the data time series agree well with predictions from the stochastic model. The electron particle and heat fluxes present large-amplitude fluctuations. For this low-density plasma, the radial electron heat flux is dominated by convection, that is, correlations of fluctuations in the electron density and radial velocity. Hot and dense blobs contribute only a minute fraction of the total fluctuation driven heat flux.
机译:Alcator C-Mod镜Langmuir探针系统已用于在外平面刮削层中采样波动等离子体参数的数据时间序列。我们呈现了一秒长时间串的电子密度,温度,径向电漂移速度和相应颗粒和电子热通量的统计分析。这些在欧姆加热的静止的等离子体条件下进行采样,下单零转向放电。电子密度和温度强烈相关,并且具有与离子饱和电流类似的波动统计。电子密度和温度时间序列都是由间歇,大幅度突发的主导,具有两种突发幅度和它们之间的等待时间的指数分布。大幅度突发的特征时间尺度约为15μs。大幅度速度波动具有稍微快速的特征时间尺度,并且以比电子密度和温度波动更快的速率出现。将这些时间序列描述为不相关的指数脉冲的叠加,我们发现概率分布函数,功率谱密度以及数据时间序列的自动相关函数与随机模型的预测完全吻合得很好。电子颗粒和热通量存在大幅度波动。对于这种低密度等离子体,径向电子热通量由对流主导,即电子密度和径向速度的波动的相关性。热和致密的斑点仅贡献总波动驱动热通量的一分钟分数。

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