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首页> 外文期刊>Journal of engineering for gas turbines and power: Transactions of the ASME >Nonlinear heat-release/acoustic model for thermoacoustic instability in lean premixed combustors
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Nonlinear heat-release/acoustic model for thermoacoustic instability in lean premixed combustors

机译:稀薄预混燃烧器热声不稳定性的非线性放热/声学模型

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Lean premixed combustors, such as those used in industrial gas turbines to achieve low emissions, are often susceptible to thermoacoustic combustion instabilities, which manifest themselves as pressure and heat release oscillations in thecombustor. These oscillations can result in increased noise and decreased durability due to vibration and flame motion. A physically based nonlinear parametric model has been developed that captures this instability. It describes the coupling of combustor acoustics with the rate of heat release. The model represents this coupling by accounting for the effect of acoustic pressure fluctuations on the varying fuel/air ratio being delivered to the flame, causing a fluctuating heat release due to both fuel airratio variations and flame front oscillations. if the phasing of the fluctuating heat release and pressure are proper; an instability results that grows into a limit cycle. The nonlinear nature of the model predicts the onset of the instability andadditionally captures the resulting limit cycle. Tests of a lean premixed nozzle run at engine scale and engine operating conditions in the UTRC single nozzle rig, conducted under DARPA contract, exhibited instabilities. Parameters from the model wereadjusted so that analytical results were consistent with relevant experimental data from this test. The parametric model captures the limit cycle behavior over a range of mean fuel air ratios, showing the instability amplitude (pressure and heat release)to increase and limit cycle frequency to decrease as mean fuel air ratio is reduced.
机译:稀薄预混燃烧器,例如工业燃气轮机中用于实现低排放的燃烧器,通常容易受到热声燃烧不稳定的影响,这表现为燃烧室中的压力和热释放振荡。由于振动和火焰运动,这些振荡会导致噪音增加和耐用性降低。已经开发了一种基于物理的非线性参数模型来捕捉这种不稳定性。它描述了燃烧室声学与热释放速率的耦合。该模型通过考虑声压波动对输送到火焰的燃料/空气比变化的影响来表示这种耦合,由于燃料空气比变化和火焰前沿振荡而导致波动的热释放。波动放热和压力的相位是否适当;不稳定的结果是增长到极限循环。该模型的非线性性质预测了不稳定性的开始,并额外捕获了由此产生的极限循环。根据 DARPA 合同,在 UTRC 单喷嘴钻机中,在发动机规模和发动机运行条件下运行的稀薄预混喷嘴测试表现出不稳定性。对模型参数进行了调整,使分析结果与该测试的相关实验数据一致。参数模型捕获了一系列平均燃料空气比的极限循环行为,显示了随着平均燃料空气比的降低而增加和限制循环频率的不稳定性幅度(压力和热释放)。

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