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On the role of different phasings of the ICRF antennas in optimized shear discharges in JET

机译:关于ICRF天线不同相位在JET中优化剪切放电中的作用

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摘要

In discharges with internal transport barriers produced by combined NBI and ICRF heating using the hydrogen minority scheme in JET, confinement and fusion performance are strongly affected by the direction of propagation of the ICRF waves. When the waves propagate along the plasma current, the formation of an internal transport barrier is prompter and the neutron yield is up to a factor of two higher than that for propagation against the current.
机译:在通过JBI中的氢少数方案通过NBI和ICRF联合加热产生的带有内部传输壁垒的放电中,约束和聚变性能受ICRF波传播方向的强烈影响。当波沿着等离子流传播时,内部传输势垒的形成会加快,并且中子产率比逆流传播的中子产率高两倍。

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