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Highly radiative plasmas for local transport studies and power and particle handling in reactor regimes

机译:用于局部运输研究以及反应堆环境中功率和颗粒处理的高辐射等离子体

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To study the applicability of artificially enhanced impurity radiation for mitigation of the plasma-limiter interaction in reactor regimes, krypton and xenon gases were injected into TFTR super- shots and high internal inductance plasmas. At NBI powers P_B ≥ 30 MW, carbon influxes (‘blooms') were suppressed, leading to improved energy confinement and neutron production in both D and DT plasmas, and the highest DT fusion energy production (7.6 MJ) in a TFTR pulse. Comparisons of the measured radiated power profiles with predictions of the MIST impurity transport code have guided studies of highly radiative plasmas in ITER. The response of the electron and ion temperatures to greatly increased radiative losses from the electrons was used to study thermal transport mechanisms. A change in the radial electric field E_r is associated with the improved confinement observed.
机译:为了研究人工增强的杂质辐射在缓解反应堆条件下的等离子体-限制剂相互作用中的适用性,将TFT气和氙气注入TFTR快照和高内部电感等离子体中。在NBI功率P_B≥30 MW时,碳涌入(“水华”)被抑制,从而改善了D和DT等离子体的能量限制和中子产生,并在TFTR脉冲中产生了最高的DT聚变能(7.6 MJ)。将测得的辐射功率曲线与MIST杂质传输代码的预测进行比较,已指导了对ITER中高辐射等离子体的研究。电子和离子温度对电子辐射损耗大大增加的响应被用于研究热传输机理。径向电场E_r的变化与观察到的改善的约束有关。

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