首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Effects of Outlet Boundary Conditions on the Reacting Flow Field in a Swirl-Stabilized Burner at Dry and Humid Conditions
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Effects of Outlet Boundary Conditions on the Reacting Flow Field in a Swirl-Stabilized Burner at Dry and Humid Conditions

机译:干湿条件下出口边界条件对旋流稳定燃烧器反应流场的影响

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摘要

During the design and testing process of swirl-stabilized combustors, it is often impractical to maintain identical outlet boundary conditions. Furthermore, it is a common practice to intentionally change the acoustic boundary conditions of the outlet in order to suppress thermoacoustic instabilities. In the presented work the susceptibility of the reacting flow field to downstream perturbations is assessed by the application of an area contraction at the outlet. Since combustion and fuel composition are shown to be important parameters for the influence of the boundary conditions on the flow field, highly steam diluted flames are investigated in addition to dry flames at different equivalence ratios and degrees of swirl. The applied measurement techniques include particle image velocimetry, laser doppler velocimetry, and emission analysis. The results reveal a clear correlation of the susceptibility of the flow field to downstream perturbations to both the inlet swirl number and the amount of dilatation caused by the flame. The concept of an effective swirl number downstream of the flame is applied to the results and is proven to be the dominating parameter. A theoretical explanation for the influence of this parameter is provided by the usage of the well known theory of subcritical and supercritical swirling flows, where perturbations can propagate upstream solely in subcritical flows via standing waves. Knowledge of the flow state is of particular importance for the evaluation of combustion tests with differing exit boundary conditions and the results emphasize the need for realistic exit boundary conditions for numerical simulations.
机译:在涡旋稳定燃烧器的设计和测试过程中,保持相同的出口边界条件通常是不切实际的。此外,通常的做法是有意改变出口的声边界条件以抑制热声不稳定性。在提出的工作中,通过在出口处应用面积收缩来评估反应流场对下游扰动的敏感性。由于燃烧和燃料成分被显示为边界条件对流场影响的重要参数,因此,除了干火在不同的当量比和旋流度下,还研究了高度蒸汽稀释的火焰。应用的测量技术包括粒子图像测速,激光多普勒测速和发射分析。结果表明流场对下游扰动的敏感性与入口涡流数和火焰引起的膨胀量之间存在明显的相关性。火焰下游有效旋流数的概念被应用到结果中,并被证明是主要参数。通过使用亚临界和超临界旋流的众所周知的理论提供了对该参数的影响的理论解释,其中扰动可以仅通过驻波在亚临界流中向上游传播。对于不同出口边界条件下的燃烧测试评估,了解流动状态尤为重要,结果强调了对数值模拟的实际出口边界条件的需求。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2012年第11期|p.111501.1-111501.9|共9页
  • 作者单位

    Chair of Fluid Dynamics Hermann-Foettinger-lnstitut, Technische Universitaet Berlin, Muller-Breslau-Str. 8, 10623 Berlin, Germany;

    Chair of Fluid Dynamics Hermann-Foettinger-lnstitut, Technische Universitaet Berlin, Muller-Breslau-Str. 8, 10623 Berlin, Germany;

    Chair of Fluid Dynamics Hermann-Foettinger-lnstitut, Technische Universitaet Berlin, Muller-Breslau-Str. 8, 10623 Berlin, Germany;

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