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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Influence of Main Swirler Vane Angle on the Ignition Performance of TeLESS-Ⅱ Combustor
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Influence of Main Swirler Vane Angle on the Ignition Performance of TeLESS-Ⅱ Combustor

机译:主旋流叶片角度对TeLESS-Ⅱ燃烧器点火性能的影响

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摘要

In order to balance the low emission and wide stabilization for lean premixed prevapor-ized (LPP) combustion, the centrally staged layout is preferred in advanced aero-engine combustors. However, compared with the conventional combustor, it is more difficult for the centrally staged combustor to light up as the main stage air layer will prevent the pilot fuel droplets arriving at igniter tip. The goal of the present paper is to study the effect of the main stage air on the ignition of the centrally staged combustor. Two cases of the main swirler vane angle of the TeLESS-Ⅱ combustor, 20 deg and 30 deg are researched. The ignition results at room inlet temperature and pressure show that the ignition performance of the 30 deg vane angle case is better than that of the 20 deg vane angle case. High-speed camera, planar laser induced fluorescence (PLIF), and computational fluids dynamics (CFD) are used to better understand the ignition results. The highspeed camera has recorded the ignition process, indicated that an initial kernel forms just adjacent the liner wall after the igniter is turned on, the kernel propagates along the radial direction to the combustor center and begins to grow into a big flame, and then it spreads to the exit of the pilot stage, and eventually stabilizes the flame. CFD of the cold flow field coupled with spray field is conducted. A verification of the CFD method has been applied with PLIF measurement, and the simulation results can qualitatively represent the experimental data in terms of fuel distribution. The CFD results show that the radial dimensions of the primary recirculation zone of the two cases are very similar, and the dominant cause of the different ignition results is the vapor distribution of the fuel. The concentration of kerosene vapor of the 30 deg vane angle case is much larger than that of the 20 deg vane angle case close to the igniter tip and along the propagation route of the kernel, therefore, the 30 deg vane angle case has a better ignition performance. For the consideration of the ignition peiformance, a larger main swirler vane angle of 30 deg is suggested for the better fuel distribution when designing a centrally staged combustor.
机译:为了在稀薄的预混合预汽化(LPP)燃烧中平衡低排放和宽稳定性,在高级航空发动机燃烧器中优选采用中央分级布局。但是,与传统的燃烧器相比,中央燃烧器更难点亮,因为主空气层会阻止引燃燃料小滴到达点火器尖端。本文的目的是研究主级空气对中央级燃烧器点火的影响。研究了TeLESS-Ⅱ燃烧室主旋流器叶片角度为20度和30度的两种情况。在室温和常压下的点火结果表明,30度叶片角情况下的点火性能优于20度叶片角情况下的点火性能。高速相机,平面激光诱导荧光(PLIF)和计算流体动力学(CFD)用于更好地了解点火结果。高速摄像头记录了点火过程,表明在点火器打开后,刚好在衬套壁附近形成了一个初始核,该核沿着径向方向传播到燃烧器中心,并开始长成大火焰,然后扩散到引燃级的出口,并最终稳定火焰。进行冷流场与喷雾场耦合的CFD。 PLIF测量已对CFD方法进行了验证,仿真结果可以从燃料分布的角度定性地代表实验数据。 CFD结果表明,这两种情况的主要再循环区域的径向尺寸非常相似,并且导致点火结果不同的主要原因是燃料的蒸汽分布。 30度叶片角情况下的煤油蒸气浓度远大于靠近点火器尖端并沿着籽粒传播路径的20度叶片角情况下的煤油蒸气浓度,因此,30度叶片角情况下的点火效果更好性能。考虑到点火性能,在设计中央分级燃烧器时,建议使用较大的主旋流器叶片角度为30度,以实现更好的燃料分配。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2017年第1期|011501.1-011501.8|共8页
  • 作者单位

    National Key Laboratory of Science and Technology on Aero-Engine Aero-Thermodynamics, School of Energy and Power Engineering, Beihang University, Beijing 100191, P.R.C.;

    National Key Laboratory of Science and Technology on Aero-Engine Aero-Thermodynamics, School of Energy and Power Engineering, Beihang University, Beijing 100191, P.R.C.;

    National Key Laboratory of Science and Technology on Aero-Engine Aero-Thermodynamics, School of Energy and Power Engineering, Beihang University, Beijing 100191, P.R.C.;

    National Key Laboratory of Science and Technology on Aero-Engine Aero-Thermodynamics, School of Energy and Power Engineering, Beihang University, Beijing 100191, P.R.C.;

    AVIC Commercial Aircraft Engine Co., Ltd, Shanghai 200241, China;

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