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Parameterized modelling of mm-wave beam propagation of the ITER ECRH remote steering upper port launcher in CATIA

机译:CATIA中ITER ECRH遥控转向上口发射器毫米波传播的参数化建模

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A 3D model has been developed in CATIA that is capable of accurate visualization of a mm-wave beam along the entire free-space section of a transmission line. This development has been applied to the design of the remote steering ECRH upper port launching system for ITER. Because the model uses parameterized equations to calculate the quasi-optical beam propagation, it can show the effects of a change of any of the transmission line components (location, orientation, or optical properties). Furthermore, it takes into account the effects the square waveguide has on the propagating beams as a function of its steered angle. The beam size at its target area inside the ITER plasma has proven to be a good indicator of the launcher's performance. It has also become clear that the 3D visualisation of the beam propagation in the structural design can result in a much more efficient use of the confined space inside each upper port plug—space that is also needed to locate sufficient neutron shielding and cooling structures, as well as to allow access for remote-handling tools.
机译:在CATIA中开发了3D模型,该模型能够沿传输线的整个自由空间部分准确显示毫米波束。此开发已应用于ITER的远程转向ECRH上端口发射系统的设计。由于该模型使用参数化方程式来计算准光学光束的传播,因此它可以显示任何传输线分量(位置,方向或光学特性)变化的影响。此外,它考虑了方波导根据其转向角对传播光束的影响。 ITER等离子体内部目标区域的光束大小已被证明是发射器性能的良好指标。还已经清楚的是,结构设计中光束传播的3D可视化可以导致更有效地利用每个上部端口塞子内部的有限空间,这也是定位足够的中子屏蔽和冷却结构所需要的空间,因为并允许访问远程处理工具。

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