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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Flame Transfer Functions and Dynamics of a Closely Confined Premixed Bluff Body Stabilized Flame With Swirl
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Flame Transfer Functions and Dynamics of a Closely Confined Premixed Bluff Body Stabilized Flame With Swirl

机译:火焰传递函数和紧密密集的绒毛体稳定的火焰与旋流的动态

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摘要

The flame transfer function (FTF) and flame dynamics of a highly swirled, closely confined, premixed flame is studied over a wide range of equivalence ratios and bulk velocities at a fixed perturbation level at the dump plane. The operating conditions are varied to examine the ratio of flame height to velocity in scaling the FTF. The enclosure geometry is kept constant, resulting in strong flame-wall interactions for some operating conditions due to varying flame height. The resulting effect on the FTF due to changes in the "effective flame confinement" can therefore be studied. For sufficiently high equivalence ratio, and the resulting sufficiently small effective confinement, modulations of the FTF are observed due to interference of the perturbations created at the swirler and at the dump plane. The small length scales and high velocities result in modulations centered at high frequencies and spanning a wide range of frequencies compared to previous studies of similar phenomena. A critical point was reached for increasing effective confinement, where the modulations are suppressed. This is linked to a temporal shift in the heat release rate where the flame impinges on the combustion chamber walls. The shift reduced the expected level of interference, demonstrating effective confinement is important for the FTF response. Additionally, a distributed time lag (DTL) model with two time lags is successfully applied to the FTFs, providing a simple method to capture the two dominant time scales in the problem, recreate the FTF, and examine the effect of effective confinement.
机译:在倾卸平面处的固定扰动水平的各个等效比和散装速度下,研究了高度旋流,紧密的预混火焰的火焰传递函数(FTF)和火焰动力学。改变操作条件以检查火焰高度与缩放FTF中的速度的比率。外壳几何形状保持恒定,导致由于变化的火焰高度导致一些操作条件的强烈的火焰壁相互作用。因此可以研究由于“有效火焰限制”的变化导致FTF的产生效果。由于足够高的等效比,并且由此产生足够小的有效限制,由于在旋流器和倾卸平面上产生的扰动的干扰,因此观察到FTF的调制。小的长度和高速度导致在高频上以高频为中心的调制,与先前的类似现象的研究相比,跨越各种频率。达到临界点来增加有效限制,抑制了调制。这与热释放速率的时间换档相关联,其中火焰撞击燃烧室壁。转变降低了预期的干扰水平,展示了有效的限制对于FTF响应很重要。此外,具有两个时间滞后的分布式时间滞后(DTL)模型被成功应用于FTFS,提供了一种简单的方法来捕获问题中的两个主导时间尺度,重新创建FTF,并检查有效限制的效果。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2021年第4期|041011.1-041011.10|共10页
  • 作者单位

    Department of Energy and Process Engineering Norwegian University of Science and Technology Trondheim 7491 Norway;

    Department of Energy and Process Engineering Norwegian University of Science and Technology Trondheim 7491 Norway;

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