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Advances in optical thermometry for the ITER divertor

机译:ITER分光器的光学测温技术进展

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摘要

Thermography will be an important diagnostic on the ITER tokamak, but the inclusion of reflective materials such as tungsten in the design for ITER's first wall and divertor region presents problems for optical temperature measurement. The ongoing testing of ITER plasma facing components (PFCs) provides an excellent opportunity to resolve such problems. This has focused on the variation of PFC emissivity with temperature and time, as well as environmental influence on thermography. The sensitivity of these systems to ambient temperature, due primarily to modification of the transmission of the optical path, has been established and minimised. The accuracy of the system is then sufficient to measure the variation of emissivity in heated material samples, by comparing its front-face luminance measured with an infrared camera to the temperature given by an implanted thermocouple. Measurements on both tungsten and carbon fibre composite are in broad agreement with theory, and thus give the material's function of emissivity with temperature at the start of its life. To determine its evolution, a bicolour pyroreflec-tometer was then installed. This uses two lasers to measure the reflectivity in addition to the luminance at two wavelengths, and thus the true temperature can be calculated. This was validated against the instrumented sample, then used along with the camera to observe an ITER mock-up during ~50,000s of 5 MW/m~2 testing. Emissivity was seen to vary little in the 500℃ region. Higher temperature tests are ongoing.
机译:热像仪将是对ITER托卡马克的重要诊断手段,但是ITER第一壁和转向器区域的设计中包含反射材料(如钨)为光学温度测量带来了问题。正在进行的ITER等离子部件(PFC)的测试为解决此类问题提供了极好的机会。这集中于PFC发射率随温度和时间的变化以及环境对热成像的影响。这些系统对环境温度的敏感度(主要是由于修改了光路的传输)已经建立并最小化。然后,通过将用红外热像仪测量的正面亮度与植入的热电偶给定的温度进行比较,该系统的精度足以测量加热的材料样品中的发射率变化。钨和碳纤维复合材料的测量与理论基本吻合,因此在使用寿命开始时就给出了材料的发射率随温度的函数。为了确定其演变,然后安装了双色热反射仪。除了使用两个波长的亮度之外,这还使用两个激光来测量反射率,因此可以计算出真实温度。这是针对仪器样品进行验证的,然后与相机一起用于在约50,000s的5 MW / m〜2测试中观察ITER模型。在500℃范围内,发射率几乎没有变化。更高的温度测试正在进行中。

著录项

  • 来源
    《Fusion Engineering and Design》 |2010年第1期|P.146-152|共7页
  • 作者单位

    CEA, IRFM, F-13108 St Paul lez Durance, France;

    rnLaboraloire National de Metrologie et d'Essais (LNE), ZA de Trappes-Elancourt, 29 avenue Roger Hennequin, 78197 TRAPPES Cedex, France;

    rnCEA, IRFM, F-13108 St Paul lez Durance, France;

    rnAREVA NP, Centre Technique-FE200, Porte Magenta BP 181, 71205 Le Creusot, France;

    rnAREVA NP, Centre Technique-FE200, Porte Magenta BP 181, 71205 Le Creusot, France;

    rnProcedes, Materiaux et Energie Solaire (PROMES), Centre National de la Recherche Scientifique (CNRS), B.P. 5, 66125 Font-Romeu Cedex, France;

  • 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

    ITER; divertor; thermography; pyrometry; tungsten; emissivity;

    机译:ITER;偏滤器热成像高温计钨发射率;
  • 入库时间 2022-08-18 00:39:45

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