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EFFECTS OF REACTING CONDITIONS ON FLOW FIELDS IN A SWIRL STABILIZED LEAN PREMIXED CAN COMBUSTOR

机译:旋流稳定精瘦液燃烧器中流场反应条件的影响

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PIV measurements to understand the flow differences between reacting and non-reacting conditions were conducted in an optically accessible single can combustor. An industrial fuel nozzle was installed at the inlet of the test section to generate the swirl flow for flame stabilization and simulate realistic conditions of a gas turbine combustor. Five different equivalence ratios between 0.50 and 0.75 were tested with propane as fuel. Main airflow was also variedfrom Reynolds numberfrom 50000 to 110000 with respect to the fuel nozzle diameter. Effect of preheating was tested by changing inlet air temperature from 23 to 200 °C. The pressure at the test section was close to atmospheric condition throughout the tests. The measurements were performed with a 2-D PIV system. Time-averaged flow velocity, vorticity and turbulent kinetic energy (TKE) were obtained from PIV data and flow structures under different conditions were compared. Swirl jet impingement location on the liner wall was determined as well to understand the impact on the liner wall. Proper orthogonal decomposition (POD) further analyzed the data to compare coherent structures in the reacting and non-reacting flows.
机译:为了了解反应和非反应条件之间的流动差的PIV测量在光学可接近的单个燃烧器中进行了反应和非反应条件之间的流动差异。在试验部分的入口处安装了工业燃料喷嘴,以产生用于火焰稳定的旋流,并模拟燃气涡轮机燃烧器的现实条件。用丙烷作为燃料测试五种不同的等效比0.50和0.75。相对于燃料喷嘴直径,主气流也在50000至110000上旋转雷诺数。通过将入口空气温度从23-200℃改变入口空气温度来测试预热的效果。在整个测试中,试验部分的压力接近大气状况。用2-D PIV系统进行测量。从PIV数据和比较不同条件下的PIV数据和流动结构获得时间平均流速,涡旋和湍流动能(TKE)。确定衬垫墙上的旋流喷射冲击位置,以了解对衬里墙壁的影响。适当的正交分解(POD)进一步分析数据以比较反应和非反应流中的相干结构。

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