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Thermo-mechanical design of the SINGAP accelerator grids for ITER NB injectors

机译:用于ITER NB注射器的SINGAP加速器格栅的热机械设计

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The SINGle Aperture-SINgle GAP (SINGAP) accelerator for ITER neutral beam injector foresees four grids for the extraction and acceleration of negative ions, instead of the seven grids of the Multi-Aperture Multi-Grid (MAMuG) reference configuration.rnThe grids have to fulfil specific requirements coming from ion extraction, beam optics and thermo-mechanical issues.rnThis paper focuses on the thermo-hydraulic and thermo-mechanical design of the grids carried out by Consorzio RFX for the design of the first ITER NB injector and the ITER NB Test Facility. The cooling circuit design (position and shape of the channels) and the cooling parameters (water coolant temperatures, pressure and velocity) were optimized with sensitivity analyses in order to satisfy the grid functional requirements (temperatures, stresses, in plane and out of plane deformations). The design required a complete modelling of the grids and their support frames by means of 3D FE and CAD models.
机译:用于ITER中性束注入器的SINGLE Aperture-Single GAP(SINGAP)加速器预见了用于提取和加速负离子的四个栅格,而不是Multi-Aperture Multi-Grid(MAMuG)参考配置的七个栅格.rn满足离子提取,束光学和热机械问题的特定要求。本文重点研究Consorzio RFX为第一台ITER NB注射器和ITER NB的设计进行的格栅的热工和液压设计。测试设施。通过敏感性分析优化了冷却回路设计(通道的位置和形状)和冷却参数(冷却水温度,压力和速度),以满足电网功能要求(温度,应力,平面内和平面外变形) )。设计需要通过3D FE和CAD模型对网格及其支撑框架进行完整的建模。

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