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FAST WAVE CURRENT DRIVE IN LOW ASPECT RATIO TOKAMAKS

机译:低倍率托卡马克中的快速波电流驱动

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The magnetic field of a low aspect ratio tokamak (LART) deviates rather significantly from the approximately 1/R dependence of conventional tokamaks. The parameterization of current drive efficiency on the basis of conventional large aspect ratio tokamaks becomes inaccurate. The physics of high harmonic ion cyclotron fast wave current drive (FWCD) and low frequency FWCD in LARTs is examined using exact evaluations of the current drive efficiencies from the adjoint technique. The results indicate that the high harmonic ion cyclotron current drive cannot penetrate to the plasma core at the high β values typical of LART reactors, and hence this scheme may only be applicable for off-axis steady state current drive, while the low frequency current drive penetrates well into the plasma core and is appropriate for on-axis current profile control. The implications for advanced scenarios of LART are discussed.
机译:低纵横比托卡马克(LART)的磁场与常规托卡马克的大约1 / R相关性有很大差异。基于常规大纵横比托卡马克的电流驱动效率的参数化变得不准确。 LART中的高谐波离子回旋加速器快速波电流驱动(FWCD)和低频FWCD的物理特性,是通过对伴随技术中电流驱动效率的精确评估来检验的。结果表明,高谐波离子回旋加速器电流驱动无法在LART反应堆的典型高β值处渗透到等离子体核,因此该方案仅适用于离轴稳态电流驱动,而低频电流驱动可以很好地渗透到等离子核中,适合进行轴上电流曲线控制。讨论了LART高级方案的含义。

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