首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >High-speed laser diagnostics for the study of flame dynamics in a lean premixed gas turbine model combustor
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High-speed laser diagnostics for the study of flame dynamics in a lean premixed gas turbine model combustor

机译:用于研究稀薄预混燃气轮机模型燃烧器火焰动力学的高速激光诊断仪

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A series of measurements was taken on two technically premixed, swirl-stabilized methane-air flames (at overall equivalence ratios of ? = 0.73 and 0.83) in an optically accessible gas turbine model combustor. The primary diagnostics used were combined planar laser-induced fluorescence of the OH radical and stereoscopic particle image velocimetry (PIV) with simultaneous repetition rates of 10 kHz and a measurement duration of 0.8 s. Also measured were acoustic pulsations and OH chemiluminescence. Analysis revealed strong local periodicity in the thermoacoustically self-excited (or " noisy ') flame (? = 0.73) in the regions of the flow corresponding to the inner shear layer and the jet-inflow. This periodicity appears to be the result of a helical precessing vortex core (PVC) present in that region of the combustor. The PVC has a precession frequency double (at 570 Hz) that of the thermo-acoustic pulsation (at 288 Hz). A comparison of the various data sets and analysis techniques applied to each flame suggests a strong coupling between the PVC and the thermo-acoustic pulsation in the noisy flame. Measurements of the stable (" quiet ') flame (? = 0.83) revealed a global fluctuation in both velocity and heat-release around 364 Hz, but no clear evidence of a PVC.
机译:在光学上可接近的燃气轮机模型燃烧器中,对两个技术上预先混合的,涡旋稳定的甲烷-空气火焰(总当量比为α= 0.73和0.83)进行了一系列测量。使用的主要诊断方法是平面激光诱导的OH自由基荧光和立体粒子图像测速(PIV),同时重复率为10 kHz,测量持续时间为0.8 s。还测量了声脉动和OH化学发光。分析表明,在与内部剪切层和射流相对应的流动区域中,热声自激(或“嘈杂”)火焰(α= 0.73)具有很强的局部周期性。螺旋进动涡流核(PVC)位于燃烧室的那个区域,其进动频率是热声脉动(288 Hz)的两倍(570 Hz)。各种数据集和分析技术的比较应用于每个火焰表明PVC和嘈杂火焰中的热声脉动之间有很强的耦合,对稳定(“安静”)火焰(?= 0.83)的测量表明,速度和放热均在364左右波动Hz,但没有明显的PVC证据。

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