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Behavior of reflected extraordinary mode in the fundamental electron cyclotron heating and current drive in JT-60U

机译:JT-60U在基本电子回旋加速器加热和电流驱动中反射超常模式的行为

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摘要

Unwanted Xmode behavior in the fundamental harmonic electron cyclotron (EC) wave launching from the low field side with an oblique toroidal injection angle is experimentally studied on JT-60U by changing the poloidal injection angle. It is found that there is a critical region in the poloidal injection angle to cause the rise in vacuum pressure at the NBI port adjacent to the ECRF antenna port. The typical EC beam power is about 1 MW and the pulse length is 3 s in this experiment. The ray-trace calculation indicates that the X-mode launched from the low field side is guided into the NBI port after reflection at the cut-off layer for the critical poloidal injection angle. The results suggest that the O-mode injection with quite high mode purity, that is, with a very low fraction of X-mode is required for the avoidance of the overheat of the in-vessel components due to the reflected X-mode in the case of the EC beam launching from the low field side, especially for long pulse operation.
机译:在JT-60U上,通过改变极向注入角,对从低场侧以倾斜环形注入角发射的基波谐波电子回旋(EC)波中的有害Xmode行为进行了实验研究。已经发现,在极向注入角中存在一个临界区域,该临界区域会导致邻近ECRF天线端口的NBI端口处的真空压力升高。在此实验中,典型的EC束功率约为1 MW,脉冲长度为3 s。射线迹线计算表明,从低场侧发射的X模在截止层反射了临界倍性注入角后被引导到NBI端口。结果表明,为了避免由于在容器中反射的X模引起的容器内组件的过热,需要具有很高的P模纯度(即X模的分数非常低)的O模注入。 EC光束从低场侧发射的情况,特别是对于长脉冲操作。

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