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TRANSIENT TEMPERATURE MEASUREMENTS OF COMBUSTOR WALLS ENCLOSING A 2-D MODEL COAXIAL INJECTOR

机译:装有二维模型同轴喷油器的燃烧室壁的瞬态温度测量

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摘要

Direct measurements of combustor inner wall temperatures are difficult due to harsh flow conditions. A novel approach was used to obtain the combustor wall temperature as a function of time and location in a H2-O2 model injector, enclosing acoustically forced flames. The emphasis was to obtain thermal boundary conditions for various injector operation. The new approach combined a series of experimental measurements on the outer wall with a transient heat transfer analysis applicable for low Biot number and low Fourier number conditions. Infrared thermometry technique was applied to obtain outer wall temperature distribution at three different wall thicknesses, and these measurements were combined with the transient analysis to calibrate the amount of heat transfer and the corresponding inner wall temperature. The results showed that the combustor inner wall temperature distribution evolved much differently for acoustically forced flames, suggesting a different thermal boundary condition should be used in those cases.
机译:由于恶劣的流动条件,很难直接测量燃烧室的内壁温度。在H2-O2模型喷油器中,使用一种新颖的方法来获取燃烧器壁温随时间和位置的变化,该喷油器围住了声传火焰。重点是获得各种喷射器操作的热边界条件。新方法将外壁上的一系列实验测量与适用于低比奥数和低傅立叶数条件的瞬态传热分析相结合。应用红外测温技术获得三种不同壁厚的外壁温度分布,并将这些测量结果与瞬态分析相结合,以校准传热量和相应的内壁温度。结果表明,对于声强迫火焰,燃烧室的内壁温度分布变化很大,这表明在这些情况下应使用不同的热边界条件。

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  • 作者

    Lee, Hak Seung;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 en
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