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Thermographic phosphors for thermometry: A survey of combustion applications

机译:测温用热成像荧光粉:燃烧应用概述

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摘要

Temperature is a fundamental thermodynamic parameter used to describe physical, chemical and biological processes. In combustion as in many other applications, knowledge about temperature plays a substantial role in helping to maintain an efficient and clean environment. Being able to measure temperature accurately in combustion and in fire-related applications is important for giving a better understanding of heat transfer phenomena and improving existing models. In the present review paper a method based on the spectroscopy of inorganic luminescent materials is described and exemplified in experiments related to combustion. The method involves the use of thermographic phosphors which enable remote temperature diagnostics to be performed with a high degree of sensitivity and accuracy. The technique is superior to those based on thermocouples and pyrometry, particularly in the vicinity of flames and when the measured surface is subjected to random movements. Several phosphor materials suitable for temperature probing are described. The application of thermographic phosphors to temperature measurements in one-point and in two-dimensions in flame spread scenarios, and in pyrolysis experiments involving different construction materials and polymers are described. Many thermographic phosphors have the property of being insensitive to variations in pressure up to 1 GPa. This property extends the use and development of thermographic thermometry to other domains, such as internal combustion engines. The temperature has been measured in a point and in two-dimensions inside the combustion chamber. The complex procedures required to implement the use of thermocouples on moving objects inside an engine make thermocouples an expensive choice. It also limits the possibilities of altering the measurement locations and thereby also complicating the investigation of different engine geometries and components. Thermographic phosphors have also been employed in gas turbine applications. Temperature probing in the afterburner of a full-size aircraft engine is described with the aim to study the effects of various engine loads on the wall temperature. Furthermore, the application of thermographic phosphors to study the temperature of droplets in relation to sprays is described. In spray dynamics, temperature is a crucial parameter for gaining an understanding of atomisation, evaporation and heat convection from the surrounding gases. Finally the application of thermographic phosphors for gas temperature measurement by seeding the particles into a gas flow is described together with the challenges associated with seeding the particles for in-situ flame measurements.
机译:温度是用于描述物理,化学和生物过程的基本热力学参数。与许多其他应用程序一样,在燃烧中,有关温度的知识在帮助维持高效清洁环境中起着重要作用。能够准确测量燃烧和与火相关的应用中的温度,对于更好地了解热传递现象和改进现有模型非常重要。在这篇综述文章中,描述了一种基于无机发光材料光谱的方法,并在与燃烧有关的实验中得到了例证。该方法涉及使用热成像荧光粉,该荧光粉可使远程温度诊断以高度的灵敏度和准确性进行。该技术优于基于热电偶和高温计的技术,尤其是在火焰附近以及被测表面随机运动时。描述了几种适用于温度探测的荧光粉材料。描述了热成像磷光体在火焰扩散场景中在一维和二维温度测量以及在涉及不同建筑材料和聚合物的热解实验中的应用。许多热成像磷光体具有对高达1 GPa的压力变化不敏感的特性。该特性将热成像测温法的使用和开发扩展到了其他领域,例如内燃机。温度是在燃烧室内的一点和二维方向上测量的。在发动机内的移动物体上实施热电偶的复杂程序使热电偶成为昂贵的选择。这也限制了改变测量位置的可能性,从而也使不同发动机几何形状和部件的研究变得复杂。热成像磷光体也已用于燃气轮机应用中。描述了全尺寸飞机发动机的加力燃烧室的温度探测,目的是研究各种发动机负载对壁温的影响。此外,描述了热成像荧光粉在研究与喷雾有关的液滴温度方面的应用。在喷雾动力学中,温度是了解周围气体的雾化,蒸发和热对流的关键参数。最后,描述了将热成像磷光体通过将颗粒接种到气流中而用于气体温度测量的应用,以及与将颗粒播种用于现场火焰测量相关的挑战。

著录项

  • 来源
    《Progress in Energy and Combustion Science》 |2011年第4期|p.422-461|共40页
  • 作者单位

    Department of Combustion Physics, Lund University, P.O.BOX 118, 221 00 Lund, Sweden;

    Department of Combustion Physics, Lund University, P.O.BOX 118, 221 00 Lund, Sweden;

    Department of Combustion Physics, Lund University, P.O.BOX 118, 221 00 Lund, Sweden;

    Department of Combustion Physics, Lund University, P.O.BOX 118, 221 00 Lund, Sweden;

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

    thermographic; phosphor; laser; surface; temperature;

    机译:热成像磷;激光;表面;温度;

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