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Modelling a Combustion Chamber acting as a Helmholtz Resonator using the Two-Microphones-Method and Design of a LQR

机译:使用双麦克风方法和LQR设计用作燃烧室用作亥姆霍兹谐振器的燃烧室。

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In this paper we introduce a novel approach to combine the Helmholtz Resonator (HR) transfer function with the well-defined two-port element method by modifying the model of a gas turbine combustor at the intersection between the combustion chamber and the exhausting outlet. Using the Two-Microphones-Method (TMM), the transfer function of the actuator is identified experimentally and incorporated into the acoustic model. The measured frequency response of the real plant confirms that the model predicts the acoustic modes of the duct and the stability of the resonance mode in case of cold flow and in case of combustion, respectively. Finally, an appropriate LQR is designed and implemented, which stabilizes the system in the unstable operating range both in the simulations and experiment.
机译:在本文中,我们通过修改燃烧室和排气出口之间的交叉点的燃气涡轮燃烧器模型来介绍一种新的亥姆霍兹谐振器(HR)传递函数与明确定义的双端口元件方法结合的新方法。使用双麦克风方法(TMM),实验识别致动器的传递函数并将其结合到声学模型中。实际工厂的测量频率响应证实,该模型预测了管道的声学模式以及在冷流情况下和在燃烧的情况下的谐振模式的稳定性。最后,设计并实施了合适的LQR,其在模拟和实验中稳定了不稳定的操作范围内的系统。

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