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Design Of A High Power Millimeter Wave Launcher For Ec H&cd System On Iter

机译:用于Iter H&cd系统的大功率毫米波发射器的设计

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An optimization procedure of the quasi-optical system for a millimeter wave launcher is developed for the ITER electron cyclotron heating and carrent drive (EC H&CD) launcher. In the launcher, the radiated RF beams from eight corrugated waveguides are reflected sequentially by two mirrors and injected into a plasma through a small aperture in the blanket shield module on the top of the launcher. Using a steepest decent method, the heat load on the mirrors is successfully reduced to the acceptable level by flattening the RF power profile on the mirrors keeping the scattering of the RF power to a minimum from the mirrors. It is found that 20 MW injection will be acceptable even when the resistivity of 2.64 × 10~(-8) Ωm for the surface of the mirror (dispersion strengthened copper, 151 ℃ assumed) is increased by a factor of ~10 with a contamination.
机译:针对ITER电子回旋加速器和Carrent驱动器(EC H&CD)发射器,开发了用于毫米波发射器的准光学系统的优化程序。在发射器中,来自八个波纹状波导的辐射RF光束被两个反射镜依次反射,并通过发射器顶部毯式屏蔽模块中的小孔注入到等离子体中。使用最陡的体面方法,通过将反射镜上的RF功率分布平坦化,将RF功率从反射镜的散射降至最低,可将反射镜上的热负载成功降低到可接受的水平。研究发现,即使反射镜表面(假设弥散强化铜,假设为151℃)的电阻率达到2.64×10〜(-8)Ωm,并且被污染增加了约10倍,注入20 MW也是可以接受的。 。

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