首页> 外文会议>American Society of Mechanical Engineers(ASME) Turbo Expo vol.5 pt.B; 20040614-17; Vienna(AT) >Influence of Hot Streak Circumferential Length-Scale in Transonic Turbine Stage
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Influence of Hot Streak Circumferential Length-Scale in Transonic Turbine Stage

机译:跨音速涡轮机热条纹周长尺度的影响

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A computational study is carried out on the influence of turbine inlet temperature distortion (hot streak). The hot streak effects are examined from both aeromechanical (forced blade vibration) and aero-thermal (heat transfer) points of view. Computations are firstly carried out for a transonic HP turbine stage, and the steady and unsteady surface pressure results are compared with the corresponding experimental data. Subsequent analysis is carried out for hot-streaks with variable circumferential wavelength, corresponding to different numbers of combustion burners. The results show that the circumferential wavelength of the temperature distortion can significantly change unsteady forcing as well as the heat-transfer to rotor blades. In particular, when the hot-streak wavelength is the same as the nozzle guide vane (NGV) blade pitch, there is a strong dependence of the preferential heating characteristics on the relative clocking position between hot-streak and NGV blade. However, this clocking dependence is shown to be qualitatively weakened for the cases with fewer hot streaks with longer circumferential wavelengths.
机译:对涡轮入口温度畸变(热条纹)的影响进行了计算研究。从航空机械(强迫叶片振动)和空气热(传热)的角度检查了热条纹效应。首先对跨音速HP涡轮级进行计算,并将稳态和非稳态表面压力结果与相应的实验数据进行比较。随后对具有可变圆周波长的热条纹进行了分析,这些条纹对应于不同数量的燃烧器。结果表明,温度畸变的周向波长可以显着改变不稳定的强迫以及热传递到转子叶片。尤其是,当热条纹的波长与喷嘴导流叶片(NGV)的桨距相同时,优先加热特性强烈依赖于热条纹和NGV桨叶之间的相对计时位置。然而,对于较少的热条纹和较长的圆周波长的情况,这种时钟依赖性显示出质量上的减弱。

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