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首页> 外文期刊>Plasma physics and controlled fusion >Carbon impurities behavior and its impact on ion thermal confinement in high-ion-temperature deuterium discharges on the Large Helical Device
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Carbon impurities behavior and its impact on ion thermal confinement in high-ion-temperature deuterium discharges on the Large Helical Device

机译:碳杂质行为及其对大螺旋装置高离子温度氘放电中离子热约束的影响

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摘要

The behavior of carbon impurities in deuterium plasmas and its impact on thermal confinement were investigated in comparison with hydrogen plasmas in the Large Helical Device (LHD). Deuterium plasma experiments have been started in the LHD and high-ion-temperature plasmas with central ion temperature (T-i) of 10keV were successfully obtained. The thermal confinement improvement could be sustained for a longer time compared with hydrogen plasmas. An isotope effect was observed in the time evolution of the carbon density profiles. A transiently peaked profile was observed in the deuterium plasmas due to the smaller carbon convection velocity and diffusivity in the deuterium plasmas compared with the hydrogen plasmas. The peaked carbon density profile was strongly correlated to the ion thermal confinement improvement. The peaking of the carbon density profile will be one of the clues to clarify the unexplained mechanisms for the formations of ion internal transport barrier and impurity hole on LHD. These results could also lead to a better understanding of the isotope effect in the thermal confinement in torus plasma.
机译:与大螺旋装置(LHD)中的氢等离子体相比,研究了氘质等离子体中碳杂质及其对热限制的影响。在LHD和高离子温度等离子体中已经开始了10Kev的中央离子温度(T-I)的高离子温度等离子体已经成功获得了氘等离子体。与氢等离子体相比,热限制改善可能持续较长时间。在碳密度谱的时间越演变中观察到同位素效应。与氘质等离子体相比,由于氘归料中的碳对流速度和扩散率较小,在氘质等离子体中观察到透短尖锐的轮廓。峰值碳密度曲线与离子热限制改进牢固相关。碳密度谱的峰值将是澄清在LHD上的离子内部传输屏障和杂质孔的形成的无法解释的机制之一。这些结果也可能导致更好地理解在托丘血浆中的热限制中的同位素效应。

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