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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Determination of the Heat Release Distribution in Turbulent Flames by a Model Based Correction of OH* Chemiluminescence
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Determination of the Heat Release Distribution in Turbulent Flames by a Model Based Correction of OH* Chemiluminescence

机译:通过基于模型的OH *化学发光校正确定湍流火焰中的热释放分布

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摘要

Imaging of OH* or CH* chemiluminescence with intensified cameras is often employed for the determination of heat release in premixed flames. Proportionality is commonly assumed, but in the turbulent case this assumption is not justified. Substantial deviations from proportionality are observed, which are due to turbulence-chemistry interactions. In this study a model based correction method is presented to obtain a better approximation of the spatially resolved heat release rate of lean turbulent flames from OH* measurements. The correction method uses a statistical strain rate model to account for the turbulence influence. The strain rate model is evaluated with time-resolved velocity measurements of the turbulent flow. Additionally, one-dimensional simulations of strained counterflow flames are performed to consider the nonlinear effect of turbulence on chemiluminescence intensities. A detailed reaction mechanism, which includes all relevant chemiluminescence reactions and deactivation processes, is used. The result of the simulations is a lookup table of the ratio between heat release rate and OH* intensity with strain rate as parameter. This lookup table is linked with the statistical strain rate model to obtain a correction factor which accounts for the nonlinear relationships between OH* intensity, heat release rate, and strain rate. The factor is then used to correct measured OH* intensities to obtain the local heat release rate. The corrected intensities are compared to heat release distributions which are measured with an alternative method. For all investigated flames in the lean, partially premixed regime the corrected OH* intensities are in very good agreement with the heat release rate distributions of the flames.
机译:通常使用增强相机对OH *或CH *化学发光进行成像,以确定预混火焰中的热量释放。通常假定比例,但是在动荡的情况下,此假设是不合理的。观察到与比例成比例的重大偏差,这是由于湍流-化学相互作用造成的。在这项研究中,提出了一种基于模型的校正方法,以便从OH *测量值中更好地估算稀湍流火焰的空间分辨热释放率。校正方法使用统计应变率模型来说明湍流影响。用湍流的时间分辨速度测量值来评估应变率模型。此外,对应变逆流火焰进行一维模拟,以考虑湍流对化学发光强度的非线性影响。使用了详细的反应机理,包括所有相关的化学发光反应和失活过程。仿真结果是以应变速率为参数的放热速率与OH *强度之比的查找表。该查找表与统计应变率模型链接以获得校正因子,该校正因子说明了OH *强度,放热率和应变率之间的非线性关系。然后使用该因子校正测得的OH *强度,以获得局部放热速率。将校正后的强度与通过另一种方法测量的放热分布进行比较。对于所有在稀薄,部分预混状态下研究的火焰,校正后的OH *强度与火焰的放热速率分布非常吻合。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power 》 |2011年第12期| p.121501.1-121501.8| 共8页
  • 作者单位

    Lehrstuhl fur Thermodynamik, Technische Universitat Munchen, BoltzmannstraRe 15, 85748 Garching, Germany;

    Lehrstuhl fur Thermodynamik, Technische Universitat Munchen, BoltzmannstraRe 15, 85748 Garching, Germany;

    Lehrstuhl fur Thermodynamik, Technische Universitat Munchen, BoltzmannstraRe 15, 85748 Garching, Germany;

    Department of Mechanical Engineering, Texas ASM University, 3123 TAMU, College Station, TX 77843;

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