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Self-consistent simulations of the interaction between fusion-born alpha particles and lower hybrid waves in ITER

机译:ITER中融合产生的α粒子与较低杂波的相互作用的自洽模拟

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In order to control the plasma current profile, it might be necessary to apply lower hybrid waves in ITER and future fusion reactors, since they are capable of generating off-axis current. However, the efficiency of the lower hybrid current drive may be affected by parasitic absorption by fusion-born alpha particles. In order to quantify this absorption, a consistent coupling has been established between (ⅰ) the DELPHINE code which calculates the LH wave propagation and absorption on electrons and alpha particles and (ⅱ) the SPOT orbit following Monte Carlo code augmented with an operator accounting for the interaction between fast ions and radio-frequency waves. The LH wave absorption in the ITER steady-state reference scenario 4 (ITER Technical Basis 2002 ITER EDA Documentation Series No 24, Report G A0 FDR 1 01 -07-13 R1.0) has been analysed for the LH source frequencies of 5 and 3.7 GHz. Results indicate that the alpha parasitic absorption is weak for both cases: 0.08% and less than 3% for 5 GHz and 3.7 GHz, respectively.
机译:为了控制等离子体电流分布,可能有必要在ITER和未来的聚变反应堆中施加较低的杂波,因为它们能够产生离轴电流。但是,较低的混合电流驱动器的效率可能会受到融合生成的α粒子的寄生吸收的影响。为了量化这种吸收,在(ⅰ)DELPHINE码和(which)SPOT轨道之间建立了一致的耦合,DELPHINE码计算了LH波在电子和α粒子上的传播和吸收;快速离子与射频波之间的相互作用。在ITER稳态参考情景4(ITER技术基础2002 ITER EDA文档系列第24号,报告G A0 FDR 1 01 -07-13 R1.0)中,对LH源频率为5和10的情况下的LH波吸收进行了分析。 3.7 GHz。结果表明,两种情况的α寄生吸收都很弱:5 GHz和3.7 GHz分别为0.08%和小于3%。

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