首页> 外文期刊>等离子体科学和技术(英文版) >Interaction of Impurity (Li, Be, B and C)and Hydrogen Isotope Pellet Injection with Reactor-relevant Plasmas
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Interaction of Impurity (Li, Be, B and C)and Hydrogen Isotope Pellet Injection with Reactor-relevant Plasmas

机译:杂质(Li,Be,B和C)与氢同位素沉淀与反应堆相关等离子体的相互作用

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Based on the two-dimensional kinetic ablation theory of the hydrogen pellet ablation developed by Kuteev [B.V. Kuteev, Nuclear Fusion, 35 (1995) 431], an algorithm of erosion speed and ablation rate calculations for Li, Be, and B impurity pellets in reactor-relevant plasma has been derived. Results show compatibilities of lithium pellet injection used in α-particle diagnostics are positive in comparison with other solid impurity pellets (e.g. Be, B and C). Using the 2-D Kuteev lentil model, including kinetic effects, we find that currently existing pellet injection techniques will not meet core-fueling requirements for ITER-FEAT. A pressure as high as 254 MPa must be applied to a pellet accelerator with a 200 cm-long single-stage pneumatic gun, in order to accelerate a pellet with a radius rp0 =0.5 cm to a velocity of Vp0, 24×105 cm/s penetrating 100 cm into the ITER plasma core. Comparisons of pellet velocity- and radius-dependent penetration depth between the Neutral Gas Shielding and the Kuteev's models are made. However, we find that the isotopic effects can lead to a 33% lower pellet speed for solid DT, compared to an identical H2 pellet penetrating the same length in ITER-FEAT plasma, and our calculations show that HFS injection will much improve core fueling efficiency.
机译:基于Kuteev开发的氢颗粒烧蚀的二维动力学烧蚀理论[B.V. Kuteev,Nuclear Fusion,35(1995)431],推导了反应堆相关等离子体中Li,Be和B杂质颗粒的腐蚀速度和烧蚀率计算算法。结果表明,与其他固体杂质颗粒(例如Be,B和C)相比,用于α颗粒诊断的锂颗粒注射剂的相容性为正。使用包括动力学效应在内的二维Kuteev小扁豆模型,我们发现当前现有的颗粒喷射技术将无法满足ITER-FEAT的核心燃料需求。为了将半径rp0 = 0.5 cm的小球加速到Vp0的速度为24×105 cm /,必须使用200厘米长的单级气动枪向小球加速器施加高达254 MPa的压力。穿透ITER等离子体核心100厘米。比较了中性气体屏蔽与Kuteev模型之间的取决于丸粒速度和半径的穿透深度。但是,我们发现,与在ITER-FEAT血浆中穿透相同长度的相同H2沉淀相比,同位素效应可以使固体DT的沉淀速度降低33%,并且我们的计算表明,HFS注入将大大提高堆芯的供油效率。

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