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High field side lower hybrid wave launch for steady state plasma sustain merit

机译:高场侧下混合波发射可实现稳态等离子体维持性能

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This paper explores how the use of waves in the lower hybrid range of frequencies (LHRF) alleviates many unresolved current drive issues when launched from the high field side (HFS) of a tokamak. Efficient, robust, reliable, steady-state current drive is a requirement for a viable tokamak fusion reactor. Launching LHRF waves from the HFS opens the 'accessibility window', allowing for use of a lower parallel refractive index, n(parallel to), for a given plasma density and on-axis magnetic field. The lower nIlwaves damp in a region of higher temperature, resulting in increased current drive efficiency and a damping profile shifted closer to the mid-radius as compared to low field side launch. Moving the LHRF antenna to the quiescent scrape off layer on the HFS reduces the likelihood of detrimental wave scattering from density fluctuations, as well as ameliorating the plasma-material-interaction and wave coupling challenges. Additional benefits with respect to fast particle and neutron fluxes can be realized by moving to the HFS. An engineering assessment of HFS launch shows that it is feasible to implement an HFS LHRF system on existing tokamaks, with fewer hurdles anticipated for future tokamaks built with HFS antenna systems integrated in the design from the start.
机译:本文探讨了从托卡马克的高场侧(HFS)发射时,在较低的混合频率范围(LHRF)中使用波如何缓解许多未解决的电流驱动问题。可行的托卡马克聚变反应堆需要高效,坚固,可靠的稳态电流驱动。从HFS发射LHRF波会打开“可访问性窗口”,对于给定的等离子体密度和同轴磁场,允许使用较低的平行折射率n(平行于)。较低的nlnwave在较高温度的区域中衰减,从而导致与低场侧发射相比,电流驱动效率提高,并且阻尼曲线移近中半径。将LHRF天线移至HFS上的静态刮除层可降低密度波动造成的有害波散射的可能性,并减轻等离子体与材料相互作用和波耦合的挑战。通过转向HFS,可以实现有关快速粒子和中子通量的其他好处。对HFS发射进行的工程评估表明,在现有的托卡马克上实施HFS LHRF系统是可行的,并且从一开始就预期使用集成了HFS天线系统的未来托卡马克的障碍较少。

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