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Numerical simulations for hydrodynamic technique protecting optical components in ITER divertor

机译:用于磨损器中的光学元件的流体动力学技术的数值模拟

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There are several protecting techniques managing with contamination on optical surfaces of in-vessel diagnostic components in ITER. Analysis of impurity transport in narrow and curved gaps gave us the idea that it can't be explained by convection flows. The proposed protecting construction, situated between plasma and irradiating laser mirror launcher, was analysed for effectiveness. The protecting ability of this construction is based on the principles of hydrodynamic, in particular on bevelled entrance, which provides redirection of polluting gas flow away from the optical components due to angling optical and geometrical channel axes. Several different numerical simulations were studied. The design, setting objectives as well as equations and parameters are under discussion. Results of 2D and 3D numerical simulations are provided.
机译:在ITER中血管诊断组分的光学表面污染有几种保护技术。 狭义和弯曲间隙中杂质传输的分析给了我们目的,即无法通过对流流解释。 分析了位于等离子体和照射激光镜发射器之间的所提出的保护结构,以获得有效性。 该结构的保护能力基于流体动力学的原理,特别是倾斜入口,其通过倾斜光学和几何通道轴引起的,提供了远离光学部件的污染气流的重定向。 研究了几种不同的数值模拟。 设计,设定目标以及方程和参数正在讨论。 提供了2D和3D数值模拟的结果。

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