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Flame Dynamics During Combustion Instability in a High-Pressure, Shear-Coaxial Injector Combustor

机译:高压剪切同轴喷射器燃烧室燃烧不稳定性期间的火焰动力学

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摘要

We present a large-eddy simulation based investigation of combustion instability in the Continuous Variable Resonance Combustor (CVRC); a high-pressure, shear-coaxial injector combustor studied experimentally at Purdue University. An important characteristic of the CVRC setup is the role that the oxidizer injector length plays in the stable/unstable combustion dynamics occurring within the combustor. We perform three simulations corresponding to different stability regions; one is a semi-stable case whereas the other two cases are unstable. The acoustic pressure fluctuation exhibits a limit cycle behavior in all cases. An abrupt change in the predicted amplitude between stable and unstable cases is also observed, consistent with the experimental trends. Further investigations to characterize the mechanism driving such abrupt change in the stability pattern when the oxidizer injector length is varied, show that acoustic interactions with the flow field lead to subtle changes in the vorticity (and mixing) dynamics, which significantly alters the distribution of species and heat release. In addition, aspects related to flame stabilization such as the mean flame anchoring location and the mode of burning, premixed or non-premixed, are also affected. The analysis of flame structures shows the presence of multi-mode burning regions where premixed and non-premixed flames appear to coexist. However, the dominant burning mode switches from premixed to non-premixed within an acoustic cycle, potentially playing an important role in flame stabilization.
机译:我们提出了基于大涡模拟的连续可变共振燃烧器(CVRC)燃烧不稳定性的研究。普渡大学(Purdue University)进行实验研究的高压剪切同轴喷射器燃烧器。 CVRC装置的重要特征是氧化剂喷射器的长度在燃烧室内发生的稳定/不稳定燃烧动力学中起着作用。我们执行了三个对应于不同稳定性区域的仿真。一种是半稳定的情况,而另两种是不稳定的情况。在所有情况下,声压波动都表现出极限循环行为。还观察到稳定和不稳定情况之间预测幅度的突然变化,与实验趋势一致。进一步研究以表征当氧化剂喷射器长度变化时驱动这种稳定模式突然改变的机制的特征,结果表明与流场的声学相互作用会导致旋涡(和混合)动力学的细微变化,从而显着改变物质的分布和放热。另外,与火焰稳定有关的方面,例如平均火焰锚定位置和燃烧方式,预混合或非预混合也受到影响。火焰结构分析表明存在多模式燃烧区域,在该区域中预混和未预混火焰似乎共存。但是,主要的燃烧模式会在一个声波循环中从预混合模式切换到非预混合模式,从而可能在火焰稳定中发挥重要作用。

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