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Thermoacoustic Modeling of a Gas Turbine Combustor Equipped With Acoustic Dampers

机译:装有声阻尼器的燃气轮机燃烧室的热声建模

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摘要

In this work, the TA3 thermoacoustic network is presented and used to simulate acoustic pulsations occurring in a heavy-duty ALSTOM gas turbine. In our approach, the combustion system is represented as a network of acoustic elements corresponding to hood, burners, flames and combustor. The multi-burner arrangement is modeled by describing the hood and combustor as Multiple Input Multiple Output (MIMO) acoustic elements. The MIMO transfer function (linking acoustic pressures and acoustic velocities at burner locations) is obtained by a three-dimensional modal analysis performed with a Finite Element Method. Burner and flame analytical models are fitted to transfer function measurements. In particular, the flame transfer function model is based on the time-lag concept, where the phase shift between heat release and acoustic pressure depends on the time necessary for the mixture fraction (formed at the injector location) to be connected to the flame. By using a state-space approach, the time domain solution of the acoustic field is obtained. The nonlinearity limiting the pulsation amplitude growth is provided by a fuel saturation term. Furthermore, Helmholtz dampers applied to the gas turbine combustor are acoustically modeled and included in the TA3 model. Finally, the predicted noise reduction is compared to that achieved in the engine.
机译:在这项工作中,介绍了TA3热声网络,并将其用于模拟重型ALSTOM燃气轮机中发生的声脉冲。在我们的方法中,燃烧系统被表示为与引擎盖,燃烧器,火焰和燃烧器相对应的声学元素网络。通过将发动机罩和燃烧室描述为多输入多输出(MIMO)声学元件,可以对多燃烧器布置进行建模。 MIMO传递函数(链接燃烧器位置处的声压和声速)是通过使用有限元方法进行的三维模态分析获得的。燃烧器和火焰分析模型适合传递函数的测量。尤其是,火焰传递函数模型基于时滞概念,其中热量释放和声压之间的相移取决于将混合物馏分(在喷射器位置形成)连接到火焰所需的时间。通过使用状态空间方法,可以获得声场的时域解。限制脉动幅度增长的非线性由燃料饱和度项提供。此外,对应用于燃气轮机燃烧器的亥姆霍兹阻尼器进行了声学建模,并包含在TA3模型中。最后,将预测的降噪与发动机实现的降噪进行比较。

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