首页> 外文期刊>Nuclear fusion >Progress of ITER-lndia activities for ITER deliverables-challenges and mitigation measures
【24h】

Progress of ITER-lndia activities for ITER deliverables-challenges and mitigation measures

机译:国际热核实验堆印度实验活动的进展-挑战和缓解措施

获取原文
获取原文并翻译 | 示例
       

摘要

The responsibilities of ITER-India include a mix of precision, heavy, R&D intensive and interface intensive systems, under the built-to-print and functional systems categories. In several systems, the components are the first or largest of their kind. The uniqueness of component specifications and adherence to the desired quality standards considering the harsh nuclear environment in which the components need to operate and survive the lifetime of ITER leads to a challenging situation-namely that neither the existing laboratories nor potential suppliers have ever done or encountered such a scale-up (either in size, capacity, precision, quality etc) and in many cases do not have even the research and development (R&D) infrastructure to match ITER's requirements. To bridge this gap, ITER-India adopted a two-step approach of first manufacturing prototypes as per ITER-specific standards and then subjecting them all to critical evaluation before launching bulk production. Some of the key areas of development include demonstrations of the following: (a) 1.5 MW radiofrequency power in the 35-65 MHz frequency range under Diacrode and Tetrode tube technologies for the ion cyclotron resonance heating system; ( b) a low loss multi-process pipe cryogenic transfer line and the development of a 3.3 kg s(-1) cold circulator for the cryoline and cryodistribution system; (c) an angled accelerator grid with precision in positioning of apertures within 50 mu m, as a first of its kind development, and special, ITER grade, copper alloy development for the diagnostic neutral beam (DNB) system. Full scale test facilities have been built for the performance assessment of the DNB, the electron cyclotron and ion cyclotron sources, cryogenic transfer lines and diagnostics systems. A summary is presented of the technical features of the major areas of procurements, notable achievements in R&D and manufacturing and their application in the Indian R&D related to fusion.
机译:ITER-印度的职责包括精密,重型,研发密集型和接口密集型系统的组合,属于按图纸印刷和功能性系统类别。在几个系统中,组件是同类中的第一个或最大的组件。考虑到部件需要在ITER的使用寿命内运行并在恶劣的核环境中工作的情况,部件规格的独特性以及对所需质量标准的遵守导致了一个充满挑战的局面,即现有实验室或潜在供应商都从未做过或遇到过这种扩大规模(大小,容量,精度,质量等)并且在许多情况下甚至没有满足ITER要求的研发(R&D)基础设施。为了弥合这一差距,印度ITER采用了两步走法,即按照ITER特定标准制造原型,然后对它们进行严格评估,然后再开始批量生产。一些关键的发展领域包括以下方面的演示:(a)在离子回旋共振加热系统的Diacrode和Tetrode管技术下,在35-65 MHz频率范围内的1.5 MW射频功率; (b)一种低损耗的多工艺管道低温传输线,并开发了一种用于低温管线和低温分配系统的3.3 kg s(-1)冷循环器; (c)作为同类产品中的第一个开发的,有角度的加速器栅格,其精度可精确地定位在50微米内的孔中,并且是用于诊断中性束(DNB)系统的ITER级特殊铜合金开发。已建立了全面的测试设施,用于评估DNB,电子回旋加速器和离子回旋加速器源,低温传输线和诊断系统的性能。总结了主要采购领域的技术特点,在研发和制造方面的显著成就以及它们在与融合相关的印度研发中的应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号