首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >High-heat-flux technologies for the European demo divertor targets: State-of-the-art and a review of the latest testing campaign
【24h】

High-heat-flux technologies for the European demo divertor targets: State-of-the-art and a review of the latest testing campaign

机译:欧洲演示偏移者目标的高热量通量技术:最先进的和最新的测试活动审查

获取原文
获取原文并翻译 | 示例
       

摘要

Divertor target is one of the most critical in-vessel components in a fusion power plant being in charge of particle and power exhaust. The targets are exposed to severe thermal loads produced by steady bombardment of impinging plasma flux. Since 2014, integrated R&D efforts have been continued aiming at developing a design concept and high-heat-flux (HHF) technologies for divertor targets of the European DEMO reactor. Recently, the second round (2017-2019) of the R&D program has been concluded. As in the first R&D round, five water-cooled target design concepts were further developed and evaluated. Fabrication technologies were improved reaching a consolidated production quality. Extensive HHF tests were conducted using small-scale mock-ups for extended loading regimes (heat flux: 20-32MW/m(2)). Comparative studies were performed to investigate effects of copper interlayer thickness (0.1-1 mm) and different tungsten armor materials. In the present paper, the final results of the second round HHF testing campaign are reported. The HHF performance of each design variant is discussed based on in-situ diagnostic data (infrared thermography), ultrasonic inspection images and postmortem metallographic micrographs. All monoblock-type design concepts passed the specified qualification criterion (>= 500 pulses at 20 MW/m(2), coolant: 130 degrees C) without any failure or armor cracking. Moreover, two of them (ITER-like and composite pipe) remained fully intact even under 25 MW/m(2) (100 pulses) and 32 MW/m(2) (5 pulses). (C) 2020 The Author(s). Published by Elsevier B.V. All rights reserved.
机译:偏滤器靶是聚变电站中最关键的容器内部件之一,负责粒子和动力排气。目标暴露在冲击等离子体通量的稳定轰击所产生的严重热负荷下。自2014年以来,综合研发工作一直在继续,旨在为欧洲示范反应堆的偏滤器目标开发设计概念和高热通量(HHF)技术。最近,第二轮(2017-2019年)研发计划已经结束。与第一轮研发一样,进一步开发和评估了五种水冷靶设计概念。制造技术得到了改进,达到了统一的生产质量。使用小型实体模型进行了广泛的HHF试验,用于扩展加载状态(热通量:20-32MW/m(2))。对比研究了铜中间层厚度(0.1-1mm)和不同钨装甲材料的影响。本文报告了第二轮HHF测试活动的最终结果。根据现场诊断数据(红外热成像)、超声波检查图像和死后金相显微照片,讨论了每个设计变量的HHF性能。所有整体式设计概念都通过了规定的鉴定标准(20 MW/m(2)时大于等于500脉冲,冷却剂:130摄氏度),没有任何故障或装甲开裂。此外,其中两个(类ITER和复合管)即使在25 MW/m(2)(100脉冲)和32 MW/m(2)(5脉冲)下也保持完整。(C) 2020作者。由爱思唯尔B.V.出版。版权所有。

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