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High Efficiency Off-Axis Current Drive by High Frequency Fast Waves

机译:高效率的离轴电流驱动高频快波

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Modeling work shows that current drive can be done off-axis with high efficiency, as required for FNSF and DEMO, by using very high harmonic fast waves ("helicons"or "whistlers"). The modeling indicates that plasmas with high electron beta are needed in order for the current drive to take place off-axis, making DIII-D a highly suitable test vehicle for this process. The calculations' show that the driven current is not very sensitive to the launched value of n_(||), a result that can be understood from examination of the evolution of n_(||) as the waves propagate in the plasma. Because of this insensitivity,relatively large values (~3) of n_(||) can be launched, thereby avoiding some of the problems with mode conversion in the boundary found in some previous experiments. Use of a traveling wave antenna provides a very narrow n_(||) spectrum, which also helps avoid mode conversion.
机译:建模工作表明,通过使用非常高谐波快速波(“Helicons”或“Whistlers”),根据FNSF和演示所需的电流驱动器可以高效地完成高效率。该建模表明,需要具有高电子测试β的等离子体,以便为电流驱动器发生轴轴,使DIII-D成为该过程的高度合适的测试车辆。计算'表明,驱动电流对N_(||)的发射值不太敏感,这可以从检查N_(||)的演变时可以理解,因为波在等离子体中传播。由于这种不敏感性,可以启动相对大的值(||)的N_(||),从而避免在一些先前实验中发现的边界中的模式转换的一些问题。使用行驶波天线提供非常窄的N_(||)频谱,这也有助于避免模式转换。

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