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首页> 外文期刊>Journal of turbomachinery >Wall Temperature Measurements in a Full-Scale Gas Turbine Combustor Test Rig With Fiber Coupled Phosphor Thermometry
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Wall Temperature Measurements in a Full-Scale Gas Turbine Combustor Test Rig With Fiber Coupled Phosphor Thermometry

机译:全尺寸燃气轮机燃烧器试验台中的壁温测量,具有光纤耦合荧光体积温度

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摘要

Wall temperature measurements with fiber coupled online phosphor thermometry were, for the first time, successfully performed in a full-scale H-class Siemens gas turbine combustor. Online wall temperatures were obtained during high-pressure combustion tests up to 8 bar at the Siemens Clean Energy Center (CEC) test facility. Since optical access to the combustion chamber with fibers being able to provide high laser energies is extremely challenging, we developed a custom-built measurement system consisting of a water-cooled fiber optic probe and a mobile measurement container. A suitable combination of chemical binder and thermographic phosphor was identified for temperatures up to 1800 K on combustor walls coated with a thermal barrier coating (TBC). To our knowledge, these are the first measurements reported with fiber coupled online phosphor thermometry in a full-scale high-pressure gas turbine combustor. Details of the setup and the measurement procedures will be presented. The measured signals were influenced by strong background emissions probably from CO*_2 chemiluminescence. Strategies for correcting background emissions and data evaluation procedures are discussed. The presented measurement technique enables the detailed study of combustor wall temperatures and using this information an optimization of the gas turbine cooling design.
机译:壁式温度测量用光纤耦合在线磷光体温度在全规模的H级西门子燃气轮机燃烧器中成功进行。在西门子清洁能源中心(CEC)测试设施的高压燃烧测试期间获得了在线壁温度。由于对具有纤维的燃烧室的光学接入能够提供高激光能量非常具有挑战性,因此我们开发了一种由水冷式光纤探头和移动测量容器组成的定制测量系统。将化学粘合剂和热敏磷光体的合适组合鉴定出高达1800K的燃烧壁(TBC)的燃烧壁的温度。据我们所知,这些是在全尺寸高压燃气涡轮燃烧器中用光纤耦合的在线磷光体热量报告的第一次测量。将呈现设置的详细信息和测量程序。测量的信号受到CO * _2化学发光的强大背景排放的影响。讨论了纠正背景排放和数据评估程序的策略。所提出的测量技术使得燃烧器壁温度的详细研究并使用该信息进行燃气轮机冷却设计的优化。

著录项

  • 来源
    《Journal of turbomachinery》 |2021年第1期|011007.1-011007.7|共7页
  • 作者单位

    Institute of Combustion Technology German Aerospace Center (DLR) 70569 Stuttgart Germany;

    Institute for Combustion and Gas Dynamics - Reactive Fluids (IVG) University of Duisburg-Essen 47057 Duisburg Germany;

    Institute of Combustion Technology German Aerospace Center (DLR) 70569 Stuttgart Germany;

    Siemens AG Energy Sector 45473 Muelheim ADR Germany;

    Institute for Combustion and Gas Dynamics - Reactive Fluids (IVG) University of Duisburg-Essen 47057 Duisburg Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    measurement techniques; wall temperature measurement;

    机译:测量技术;壁温测量;

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