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R&D status of the Indian test facility for ITER diagnostic neutral beam characterization

机译:印度ITER诊断中性束表征测试设备的研发状况

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The Indian test facility (INTF) is a R&D facility under development at the Institute for Plasma Research, Gandhinagar, as part of the neutral beam development from negative ion source program. The major advantage of the INTF, besides developing beams from large ion sources, is to characterize and benchmark the ITER diagnostic neutral beam (DNB) to the desired specifications over transport lengths of similar to 21 m, a unique feature of this test bed. Such a study will establish the expected power to be delivered by DNB into the ITER plasma, an important parameter to estimate the SIN ratio expected from the He ash measurements by charge exchange recombination spectroscopy. It may be noted that DNB is a procurement package for India as an in-kind contribution to ITER. Extensive physics and thermomechanical calculations have been performed to finalize the component design and layout. Adequate choice of materials, and manufacturing and jointing processes compatible to ITER safety standards have been made in order to make the components adhere to the safety and quality classification, thereby ensuring that the components survive the ITER lifetime while operating in harsh nuclear environments. The components are currently in various phases of manufacturing, and the first operations of the INTF are anticipated in Q4 of 2019.
机译:印度测试设施(INTF)是甘地那加尔(Gandhinagar)等离子体研究所正在研发的研发设施,是负离子源计划中性束开发的一部分。 INTF的主要优点是,除了可以从大型离子源中产生电子束外,还可以将ITER诊断中性离子束(DNB)表征并使其在超过21 m的运输长度上达到所需规格,这是该测试台的独特之处。这项研究将确定DNB传递到ITER等离子体中的预期功率,这是估计通过电荷交换复合光谱法从He灰分测量中预期的SIN比率的重要参数。应当指出,DNB是印度的一揽子采购计划,是对ITER的实物捐助。为了确定零件的设计和布局,已经进行了广泛的物理和热力学计算。为了使组件符合安全和质量分类,已经做出了足够的材料选择以及与ITER安全标准兼容的制造和焊接工艺,从而确保了这些组件在恶劣的核环境下运行时仍能在ITER的使用寿命内得以生存。这些组件目前处于制造的各个阶段,预计INTF将于2019年第四季度首次投入运营。

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