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Effect of Swirling Strength on Flow Characteristics of a Heavy-Duty Gas Turbine Annular Combustion Chamber

机译:旋转强度对重型燃气轮机环形燃烧室流动特性的影响

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Based on the self-designed annular combustion chamber of a 300 MW heavy-duty gas turbine, the ANSYS Fluent 15.0 is used to carry out numerical simulation research on the flow process in the combustion chamber. It mainly studies the influence of the swirling strength of the inlet airflow on the velocity fields in non-reacting and reacting flows, temperature field and low pollution emission in the annular combustor. It is found that two central recirculation zones with opposite directions of rotation are formed in the inlet section of the combustion chamber. Two angular recirculation zones are formed at the bosses and rotate around the bosses. The structure of the central recirculation zone is mainly affected by the swirling strength of the premixed flow from outer ring while the angular recirculation zone is affected by the flows from inner hole and outer ring. The average velocity of the reacting flow is about twice that of the non-reacting flow. The temperature on the central axis section of the combustor increases first and then decreases from the central of chamber to the wall. The average temperature of the central recirculation zone in the combustion chamber is around 2223 K. The average temperature in the near-wall region is around 2200 K. Due to the high temperature in the combustion chamber, a certain amount of NO_x is generated.
机译:基于300 MW重型燃气涡轮机的自行设计的环形燃烧室中,ANSYS流利15.0被用于执行在所述燃烧室中的流动过程数值模拟研究。它主要研究对非反应,并在环形燃烧反应流,温度场和低污染排放的速度场的入口气流的回旋强度的影响。据发现,在燃烧室的入口部形成与旋转方向相反的两个中心回流区。在凸起上形成的两个角再循环区和绕凸台。中央回流区的结构主要受从外圈预混流的旋转强度,同时角再循环区,受从内孔和外环流动。反应流的平均速度大约是该非反应流的两倍。在燃烧器的中心轴部的温度增加,然后再从中央腔室的降低在墙上。在燃烧室中的中心回流区的平均温度为约2223在近壁区K.的平均温度是2200左右K.由于在燃烧室中的高温时,产生的NO_x的一定量。

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