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The upgraded laser in vessel viewing system (IWS) for ITER

机译:用于ITER的升级版激光血管观察系统(IWS)

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摘要

A prototype of a laser in vessel viewing and ranging system was developed at ENEA laboratories in Frascati, it uses the amplitude modulated laser radar concept and it is conceived to withstand the severe ITER conditions. The in vessel viewing system (IVVS) probe has been designed and built to perform sub-millimetric three-dimensional images inside ITER; it is based on an intrinsically radiation resistant concept and architecture. A first characterization of the IWS probe under room conditions was made at Frascati Labs on a full-scale mock-up of the ITER first wall panel (FWP) and of the divertor vertical target. The first characterization demonstrated that an upgrade of the IWS performances was necessary especially to cope with divertor surfaces made of carbon material, which is highly absorbent from optical point of view.rnThe paper describes the new developments of IWS prototype to increase range measurement performances that was obtained increasing the modulation frequency, the optical efficiency of the probe optics and the laser power. A new test campaign has been carried out on the upgraded IVVS and a compact characteristic curve describing its performances has been found both in mathematical and graphical form. As far as viewing is concerned, the system has confirmed the sub-millimetric viewing resolution, reaching in the worst cases ~1 mm of resolution. The image quality was excellent in almost all the cases. The range measurement performance of IVVS system has been strongly upgraded reducing the standard deviation of range measure of a factor varying from 6 to 12. The increased performance allows measuring surface shapes and erosion on first wall tiles and divertor also for inclination angles completely outside the previous IWS characteristics.
机译:弗拉斯卡蒂的ENEA实验室开发了一种舰船观测和测距系统激光器的原型,它使用了调幅激光雷达概念,可以承受恶劣的ITER条件。船上观察系统(IVVS)探头经过设计和制造,可在ITER内部执行亚毫米级的三维图像;它基于本质上抗辐射的概念和体系结构。 ISC探测器在室温下的首次表征是在Frascati实验室使用ITER第一壁板(FWP)和分流器垂直靶标的完整模型进行的。首次表征表明,必须对IWS性能进行升级,特别是为了应对由碳材料制成的分流器表面,从光学角度来看,该分流器表面具有很高的吸收性。获得了增加的调制频率,探测光学器件的光学效率和激光功率。已对升级后的IVVS进行了新的测试,并以数学和图形形式找到了描述其性能的紧凑特性曲线。就观看而言,该系统已确认了亚毫米级的观看分辨率,在最坏的情况下,分辨率可达〜1 mm。在几乎所有情况下,图像质量都非常好。 IVVS系统的范围测量性能得到了极大的提升,减少了范围测量的标准偏差,范围从6到12。变化的性能允许测量第一块墙砖和分流器上的表面形状和腐蚀,以及完全不在以前的倾斜角度下IWS特性。

著录项

  • 来源
    《Fusion Engineering and Design》 |2009年第6期|224-228|共5页
  • 作者单位

    ENEA/EURATOM Fusion Association, Via Enrico Fermi 45,1-00044 Frascati, Rome, Italy;

    ENEA/EURATOM Fusion Association, Via Enrico Fermi 45,1-00044 Frascati, Rome, Italy;

    ENEA/EURATOM Fusion Association, Via Enrico Fermi 45,1-00044 Frascati, Rome, Italy;

    ENEA/EURATOM Fusion Association, Via Enrico Fermi 45,1-00044 Frascati, Rome, Italy;

    ENEA/EURATOM Fusion Association, Via Enrico Fermi 45,1-00044 Frascati, Rome, Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    inspection system; viewing system; optical radar; laser; laser radar; radiation resistant;

    机译:检查系统;观察系统;光学雷达激光;激光雷达耐辐射;

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