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Noise mechanisms in a transonic high-pressure turbine stage

机译:跨音速高压透平级的噪声机理

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In modern ultra-high by-pass ratio turboengines, the noise contribution of both turbine stages and combustion chamber is expected to increase drastically. In the present work, both noise sources are evaluated in the realistic, fully three-dimensional transonic high-pressure turbine stage MT1 using large-eddy simulations (LES). An analysis of the basic flow field and the different turbine noise generation mechanisms is performed for two configurations: one with a steady inflow and one with an unsteady inflow, where a plane entropy wave train at a given frequency is injected at the inlet and propagates across the stage generating indirect noise. The noise is evaluated through Fourier analysis, dynamic mode decomposition of the flow field, and estimates of propagation coefficients. The steady case show three different dominant noise mechanisms: the usual stator wake brushing of the rotor blades, the several pulsating shocks in the stage and the vortex shedding. The forced results have additional tonal noise caused by the indirect noise mechanism generated by the acceleration and distortion of entropy spots. They are compared with previous two-dimensional (2D) simulations of a similar stator/rotor configuration, as well as with the compact theory. Results show that the upstream propagating entropy noise is reduced due to the choked turbine nozzle guide vane. Downstream acoustic waves are found to be of similar strength as the 2D case and larger than the blade passing frequency of the wake-interaction mechanism, highlighting the potential impact of indirect combustion noise on the overall noise signature of the engine.
机译:在现代超高旁通比涡轮发动机中,涡轮级和燃烧室的噪声贡献都将急剧增加。在当前的工作中,使用大涡流模拟(LES)在真实的,全三维跨音速高压涡轮MT1级中评估了两种噪声源。针对两种配置对基本流场和不同的涡轮机噪声产生机制进行了分析:一种具有稳定的流入,另一种具有不稳定的流入,其中给定频率的平面熵波列注入到入口并传播产生间接噪声的舞台。通过傅立叶分析,流场的动态模式分解以及传播系数的估计来评估噪声。稳态情况显示了三种不同的主要噪声机制:转子叶片的常规定子尾刷,阶段中的几次脉动冲击和涡旋脱落。强制结果具有由熵点的加速和失真所生成的间接噪声机制所导致的其他音调噪声。将它们与类似的定子/转子配置的先前二维(2D)模拟以及紧凑理论进行了比较。结果表明,由于涡轮喷嘴导叶堵塞,上游传播的熵噪声得以降低。发现下游声波具有与2D情况相似的强度,并且比尾流相互作用机构的叶片通过频率大,突出了间接燃烧噪声对发动机总体噪声特征的潜在影响。

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