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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Time-resolved temperature profile measurements in the exhaust of a single sector gas turbine combustor at realistic operating conditions
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Time-resolved temperature profile measurements in the exhaust of a single sector gas turbine combustor at realistic operating conditions

机译:在现实操作条件下单个扇形燃气轮机燃烧器排气中的时间分辨温度曲线测量

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摘要

Records of the time-varying temperature profile at flight relevant operating conditions are acquired at the exit of a combustion chamber fitted with a staged, lean-burn fuel injector using high-speed laser induced fluorescence (LIF) at a sample rate of 10 kHz. Temperatures are estimated from the concentration dependent fluorescence of the hydroxyl (OH) radical under the assumption of local equilibrium. Beyond the time-series analysis, the acquired data is correlated with simultaneously acquired OH chemiluminescence sampled in the primary zone near the fuel injector. These analyses reveal a strong influence from the precessing vortex core, originating in the primary zone, on oscillations in the temperature profiles measured at the exit of the combustor.
机译:在装有分段的燃烧室的燃烧室的出口处获取飞行相关操作条件下的时变温度曲线的记录,其使用高速激光诱导荧光(LiF)以10kHz的采样率。 在局部平衡的假设下,从羟基(OH)自由基的浓度依赖性荧光估计温度。 超出时间序列分析,所获取的数据与在燃料喷射器附近的主区域中采样的同时获取的OH化学发光相关。 这些分析揭示了在燃烧器出口处测量的温度型材中的振荡中的初级区的精细涡流芯的强烈影响。

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    Tech Univ Darmstadt Inst React Flows &

    Diagnost Otto Berndt Str 3 D-64287 Darmstadt Germany;

    Deutsch Zentrum Luft &

    Raumfahrt DLR Inst Prop Technol D-51170 Cologne Germany;

    Deutsch Zentrum Luft &

    Raumfahrt DLR Inst Prop Technol D-51170 Cologne Germany;

    Deutsch Zentrum Luft &

    Raumfahrt DLR Inst Prop Technol D-51170 Cologne Germany;

    Rolls Royce Plc Combust Aerothermal Methods POB 31 Derby DE24 8BJ England;

    Rolls Royce Deutschland Ltd &

    Co KG Aeroacoust &

    Noise Syst Design Eschenweg 11 D-15827 Dahlewitz Germany;

    Tech Univ Darmstadt Inst React Flows &

    Diagnost Otto Berndt Str 3 D-64287 Darmstadt Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 流体力学;
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