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首页> 外文期刊>Journal of engineering for gas turbines and power: Transactions of the ASME >Sub-scale demonstration of the active feedback control of gas-turbine combustion instabilities
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Sub-scale demonstration of the active feedback control of gas-turbine combustion instabilities

机译:燃气轮机燃烧不稳定主动反馈控制的子尺度演示

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摘要

Described are sub-scale tests that successfully demonstrate active feedback control as a means of suppressing damaging combustion oscillations in natural-gas-fueled lean-premix combustors. The control approach is to damp the oscillations by suitably modulating an auxiliary flow of fuel injected near the flame. The control system incorporates state observer software that can ascertain the frequency, amplitude, and phase of the dominant modes of combustion oscillation, and a sub-scale fuel flow modulator that responds to frequencies well above 1 kHz. The demonstration was conducted on a test combustor that could sustain acoustically coupled combustion instabilities at preheat and pressurization conditions approaching those of gas-turbine engine operation. With the control system inactive, two separate instabilities occurred with combined amplitudes of pressure oscillations exceeding 70 kPa (10 psi). The active control system produced four-fold overall reduction in these amplitudes. With the exception of an explainable control response limitation at one frequency, this reduction represented a major milestone in the implementation of active control. References: 11
机译:所描述的是子规模测试,成功证明了主动反馈控制是抑制天然气燃料稀薄预混燃烧器中破坏性燃烧振荡的一种手段。控制方法是通过适当调节在火焰附近喷射的辅助燃料流来抑制振荡。该控制系统集成了状态观察器软件,可以确定主要燃烧振荡模式的频率、幅度和相位,以及响应远高于 1 kHz 频率的子尺度燃料流量调制器。该演示是在测试燃烧器上进行的,该燃烧室可以在接近燃气涡轮发动机运行的预热和增压条件下保持声学耦合燃烧的不稳定性。在控制系统处于非活动状态的情况下,发生了两个单独的不稳定,压力振荡的组合幅度超过 70 kPa (10 psi)。主动控制系统使这些振幅总体降低了四倍。除了在一个频率上可解释的控制响应限制外,这种减少代表了主动控制实施的一个重要里程碑。[参考文献: 11]

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