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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Predicting lean blow-off limit of gas turbine combustors based on Damkoehler number and detailed atomization information
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Predicting lean blow-off limit of gas turbine combustors based on Damkoehler number and detailed atomization information

机译:基于Damkohler号和详细雾化信息预测燃气轮机燃烧器的贫吹吹限

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摘要

A hybrid lean blow-off prediction method based on Damköhler ( Da ) number was proposed in the authors’ previous study. However, the uniform model for fuel drop size distribution cannot fully reflect the actual atomization quality under lean blow-off conditions, which has negative effects on prediction accuracy. In the current study, atomization experiments are conducted under different fuel supply pressure. The atomization quality is described by Rosin–Rammler model and is integrated into numerical simulation. The calculation method of chemical time scale ( τ_(c) ) is improved by accurately differentiating the inlet and outlet surface of reaction zone. After the improvement, the Da number under lean blow-off conditions mainly lies between 0.3 and 0.8, while under the designing condition, the Da number is about 20. Compared with the former method, the optimized method in the present article can distinguish stable combustion states markedly from lean blow-off states. Through the introduction of detailed atomization information and the improvement of time scale calculation, lean blow-off prediction accuracy in the present work is efficiently improved, which can provide powerful technical support for engineering applications.
机译:提出了基于Damköhler(DA)数的混合瘦禁止预测方法在提交人之前的研究中。然而,燃料损耗尺寸分布的均匀模型不能完全反映贫吹吹条件下的实际雾化质量,这对预测精度产生负面影响。在目前的研究中,雾化实验在不同的燃料供应压力下进行。 Rosin-Rammler模型描述了雾化质量,并集成为数值模拟。通过精确地区分反应区的入口和出口表面来改善化学时间尺度(τ_(c))的计算方法。改进后,DA数在贫吹吹条件下主要位于0.3和0.8之间,而在设计条件下,DA数为约20.与以前的方法相比,本文中的优化方法可以区分稳定的燃烧明显来自贫困状态。通过引入详细的雾化信息和时间尺度计算的提高,本作工作中的稀薄预测精度是有效的改进,可以为工程应用提供强大的技术支持。

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  • 作者单位

    Institute of Engineering Thermophysics Chinese Academy of Sciences|School of Aeronautics and Astronautics University of Chinese Academy of Sciences;

    Institute of Engineering Thermophysics Chinese Academy of Sciences|School of Aeronautics and Astronautics University of Chinese Academy of Sciences;

    Institute of Engineering Thermophysics Chinese Academy of Sciences;

    Institute of Engineering Thermophysics Chinese Academy of Sciences;

    Institute of Engineering Thermophysics Chinese Academy of Sciences|School of Aeronautics and Astronautics University of Chinese Academy of Sciences;

    Institute of Engineering Thermophysics Chinese Academy of Sciences|School of Aeronautics and Astronautics University of Chinese Academy of Sciences|Key Laboratory of Light-duty Gas-turbine Institute of Engineering Thermophysics Chinese Academy of Sciences;

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  • 正文语种 eng
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  • 关键词

    Combustors; gas turbine combustion; lean blow-off prediction; lean combustion;

    机译:燃烧器;燃气轮机燃烧;瘦爆破预测;瘦燃烧;
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