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首页> 外文期刊>Fusion Engineering and Design >Stray millimeter-wave radiation loads on ITER fused silica windows
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Stray millimeter-wave radiation loads on ITER fused silica windows

机译:ITER熔融石英窗户上的杂散毫米波辐射载荷

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摘要

In ITER, the window assemblies will be subjected to the combination of loads due to stray radiation and neutron streaming. Therefore, adequate tests are needed to qualify the windows for the hostile environmental conditions. In ITER, two main systems will generate high power waves in the millimeter range: the Collective Thomson Scattering (CTS) system, with a total power of 1 MW at 60 GHz, and the Electron Cyclotron Resonant Heating (ECRH) system, with a maximum power of 20 MW at 170 GHz. In particular operating conditions, a significant power fraction can be deflected in other ports as stray radiation. High levels of stray radiation could damage diagnostic windows that are safety relevant components. The radiation absorbed by the fused silica window assemblies on ports #11 and #12 have been evaluated in detail. The possible effects of gamma and neutron flux on the dielectric permittivity and loss tangent, determining the absorption, have also been reviewed.
机译:在ITER中,由于杂散辐射和中子流,窗组件将承受载荷的组合。因此,需要进行充分的测试才能使窗户符合恶劣的环境条件。在国际热核实验堆中,两个主要系统将产生毫米范围内的高功率波:集合式汤姆森散射(CTS)系统,在60 GHz时的总功率为1 MW,以及电子回旋共振加热(ECRH)系统,最大170 GHz时功率为20 MW。在特定的运行条件下,很大的功率份额可能会在其他端口中作为杂散辐射偏转。高水平的杂散辐射可能会损坏与安全相关的诊断窗口。已对端口#11和#12上熔融石英窗口组件吸收的辐射进行了详细评估。伽马和中子通量对介电常数和损耗角正切(决定吸收)的可能影响也已进行了综述。

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