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Identification of coherent structures in distributed swirl-stabilized wet combustion

机译:分布式旋流稳定燃烧中的相干结构的识别

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Towards achieving sustainable and decarbonized power, biomass to electricity is an attractive pathway. To that end, the humidified gas turbine cycle is a promising technology. Recirculated steam which contains low-grade heat can be used to replace part of the air flow. This immediately reduces power loss in the compressor and increases specific power output, benefiting higher electrical efficiency compared to dry cycles. With high steam content, wet combustion leads to the so-called flameless combustion (FC) or colorless distributed combustion (CDC) which is presently investigated using large eddy simulation and a detailed finite rate chemistry method. Further insight regarding the coherent structures is obtained. Proper orthogonal decomposition method is applied on both the velocity and the heat release field aiming to explore the in-depth dynamic of flow-flame interaction in a swirl burner. Our results are the first reporting two distinct sets of helical coherent structures. A higher frequency mode or structure at Strouhal number St -0.7 is caused by the vortex shedding, and a lower frequency mode at St -0.1 corresponds to the off-central motion of an intermittently occurring precessing vortex core (PVC). With high steam content (hence very distributed reaction regime), more frequent occurrence of the marginally stable PVC is observed. The wet flame local extinction is evidenced to be an important driver towards the promotion and suppression of the PVC structure. Compared to the very energetic flow-flame interaction in conventional flames, FC or CDC flames undergo less fluctuations.
机译:为了实现可持续和脱碳的力量,生物量为电力是一种有吸引力的途径。为此,加湿的燃气轮机循环是一个有前途的技术。含有低级热的再循环蒸汽可用于替换部分空气流动。这立即降低了压缩机中的功率损耗,并增加了特定的功率输出,与干周期相比,利益更高的电效率。具有高蒸汽含量,湿燃烧导致所谓的无焰燃烧(Fc)或无色分布式燃烧(CDC),目前使用大涡模拟和详细的有限速率化学方法研究。获得关于相干结构的进一步洞察力。征正交分解方法被应用在速度和热释放字段旨在探索在旋流燃烧器流火焰相互作用的深度动态两者。我们的结果是第一个报告两组不同的螺旋相干结构。 Strouhal Number ST -0.7处的较高频率模式或结构是由涡旋脱落引起的,并且ST -0.1的较低频率模式对应于间歇发生的出现的涡旋核(PVC)的离心运动。具有高蒸汽含量(因此非常分布式的反应制度),观察到更频繁地发生了边缘稳定的PVC。湿火焰局部灭绝被证明是朝向PVC结构促进和抑制的重要驾驶员。与传统火焰中的非常精力的流动火焰相比,Fc或CDC火焰发生不那么波动。

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