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Greenwald density limit and power balance in tokamaks

机译:绿瓦密度限制和功率平衡在托卡马克斯

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The critical density limit in tokamaks is investigated. It is shown that the equality of the input power and power radiated by impurities corresponds to the Greenwald limit. In Ohmic tokamak plasmas the auxiliary heating may increase the density limit, as it has been shown in experiments. The radiated power threshold for plasmas with heavy impurities, observed in experiments, is derived. Radiation produced by heavy impurities is spread practically uniformly along the plasma radius in contrast to the radiation of light impurities. The effective heating power is decreased by radiation losses and, as a consequence, becomes lower than the threshold for the H-L transition. If the input power is close to the radiated one, the disruption occurs.
机译:研究了Tokamaks的临界密度限制。结果表明,通过杂质辐射的输入功率和功率的平等对应于Greenwald极限。在欧姆Tokamak等离子体中,辅助加热可能会增加密度极限,因为它已在实验中显示。衍生在实验中观察到具有重杂质的等离子体的辐射功率阈值。与光杂质的辐射相比,由重杂质产生的辐射沿着等离子体半径沿着等离子体半径蔓延。通过辐射损耗降低有效的加热功率,结果变得低于H-L转变的阈值。如果输入功率接近辐射1,则发生中断。

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