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首页> 外文期刊>Физиκа плазмы >THE STUDY OF L-H TRANSITION TRIGGERED BY PELLET INJECTION BASED ON A POWER THRESHOLD MODEL
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THE STUDY OF L-H TRANSITION TRIGGERED BY PELLET INJECTION BASED ON A POWER THRESHOLD MODEL

机译:基于功率阈值模型的球团注入触发L-H跃迁的研究

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摘要

Simulations of ITER plasma during an L-H transition triggered by a pellet injection are carried out using 1.5D BALDUR integrated predictive modeling code. In these simulations, a plasma core transport is predicted using a combination of the Multi-mode (MMM95) turbulent transport model and neoclassical transport (NCLASS) model. The pellet ablation behavior is described using the neutral gas shielding (NGS) pellet model with the grad-B drift effect is also included. Because of the increase of the plasma density and the reduction of the temperature, the plasma self-heating powers (ohmic heating and alpha heating) increase; whereas the plasma energy loss (through radiation) decreases. As a result, the total power across the separatrix increases. On the other hand, the L-H power threshold decreases. With all the changes of heating, an L-H transition can be induced even though the auxiliary heating is not enough for the L-H transition before pellet injection. It is also found that the L-H transition triggered by pellet injection depends sensitively on the pellet radius, but only moderately on the pellet velocity.
机译:使用集成的1.5D BALDUR预测模型代码,对由颗粒注入触发的L-H过渡期间ITER等离子体的模拟。在这些模拟中,使用多模式(MMM95)湍流传输模型和新古典传输(NCLASS)模型的组合来预测等离子体核的传输。使用中性气体屏蔽(NGS)颗粒模型描述了颗粒的烧蚀行为,还包括了grad-B漂移效应。由于等离子体密度的增加和温度的降低,等离子体的自加热功率(欧姆加热和α加热)增加;而等离子能量损失(通过辐射)减少了。结果,横穿头皮的总功率增加。另一方面,L-H功率阈值降低。随着加热的所有变化,即使在丸粒注入之前辅助加热不足以进行L-H转变,也可以诱发L-H转变。还发现,由丸粒注入触发的L-H转变敏感地取决于丸粒半径,但仅适度地取决于丸粒速度。

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