RQL燃烧室稀薄燃尽区的火焰动力学——对主燃区速度波动的响应

IF 1.4 4区 工程技术 Q3 ENGINEERING, MECHANICAL International Journal of Spray and Combustion Dynamics Pub Date : 2022-09-01 DOI:10.1177/17568277221128169
Julian Renner, Martin March, C. Hirsch, T. Sattelmayer
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引用次数: 2

摘要

本研究的重点是阐明富急冷贫燃室贫燃区的火焰动力学。通过一种新的实验方法,在空间上将富燃区与贫燃区分离,后者可以根据速度波动进行独立研究。确保贫燃区中具有声学刚性的混合空气端口,以防止初级横流与次级混合空气射流的任何声学相互作用。因此,在混合空气入口处使用定义的边界条件。结果没有产生热声相互作用和额外的火焰动力学。在这种特定情况下,贫燃烬区可以被视为允许应用现有评估方法的2端口系统,例如根据Rankine-Hugoniot(RH)方程的火焰传递函数(FTF)的声学测定,或者结合多麦克风方法(MMM)的化学发光的热释放的量化。在这项研究中,介绍了用RH方法声学测量的FTF,并将其作为与通过光电倍增管(PMT)测量的FTFs进行比较的基线。研究发现,燃尽区的反向扩散火焰只对低频范围内的波动做出反应,并观察到明显的低通行为。通过PMT计算的FTF与RH的FTF非常匹配。振幅加权相位图像,用高速相机设置记录,可视化激发过程中的变化,补充并证实了FTF的发现。
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Flame dynamics in the lean burnout zone of an RQL combustion chamber - response to primary zone velocity fluctuations
This study focuses on elucidating the flame dynamics of the lean burnout zone of an Rich-Quench-Lean (RQL) combustion chamber. With a new experimental approach of spatially separating the rich primary zone from the lean burnout zone, the latter can be investigated independently in terms of velocity fluctuations. Acoustically stiff mixing air ports in the lean burnout zone are ensured to prevent any acoustic interaction of the primary crossflow with the secondary mixing air jets. Therefore, defined boundary conditions at the mixing air inlets are used. Resulting no thermoacoustic interaction and additional flame dynamics are generated. In this specific case the lean burnout zone can be treated as a 2-port system allowing the application of existing evaluation methods e.g. acoustic determination of flame-transfer-functions (FTF) from the Rankine-Hugoniot (RH) equation or quantification of the heat release with chemiluminescence in combination with the Multi-Microphone-Method (MMM). Within this research, FTFs acoustically measured with the RH approach are presented and serve as a baseline for comparison with ones measured via a photomultiplier tube (PMT). It is found that the inverse diffusion flame in the burnout zone only reacts to fluctuations in the low frequency range and a clear low pass behavior is observed. The FTFs, calculated via the PMT match those from RH very well. Amplitude weighted phase images, recorded with a high-speed camera setup, visualize changes during excitation which complement and confirm the findings from the FTF.
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来源期刊
International Journal of Spray and Combustion Dynamics
International Journal of Spray and Combustion Dynamics THERMODYNAMICS-ENGINEERING, MECHANICAL
CiteScore
2.20
自引率
12.50%
发文量
21
审稿时长
>12 weeks
期刊介绍: International Journal of Spray and Combustion Dynamics is a peer-reviewed open access journal on fundamental and applied research in combustion and spray dynamics. Fundamental topics include advances in understanding unsteady combustion, combustion instability and noise, flame-acoustic interaction and its active and passive control, duct acoustics...
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