首页> 外文期刊>Combustion Science and Technology >A GENERALIZED MODEL OF ACOUSTIC RESPONSE OF TURBULENT PREMIXED FLAME AND ITS APPLICATION TO GAS-TURBINE COMBUSTION INSTABILITY ANALYSIS
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A GENERALIZED MODEL OF ACOUSTIC RESPONSE OF TURBULENT PREMIXED FLAME AND ITS APPLICATION TO GAS-TURBINE COMBUSTION INSTABILITY ANALYSIS

机译:湍流混合气火焰响应的广义模型及其在燃气轮机燃烧不稳定性分析中的应用

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摘要

An analytical model is developed to study the combustion response of turbulent premixed flames to acoustic oscillations. The analysis is based on a level-set flamelet model, and accommodates spatial variations in chamber geometry and mean-flow properties. All known factors affecting the flame response to local flow disturbances are analyzed. A triple decomposition technique, which expresses each flow variable as the sum of a long-time-averaged, a periodic, and a turbulent component, is used to examine the interactions between acoustic and turbulent motions and their collective influence on the flame dynamics. As specific examples, both a simple and an enveloped flame commonly observed in a swirl-stabilized combustor are studied. The resultant flame response is incorporated into a three-dimensional acoustic analysis to determine the stability characteristics of a model gas-turbine combustor. Results are consistent with experimental observations and numerical simulations in terms of the stability boundary and acoustic wave properties. In particular, the enveloped flame tends to be resonantly coupled with the acoustic velocity oscillation, leading to large excursions of combustion oscillations.
机译:建立了一个分析模型来研究湍流预混火焰对声振荡的燃烧响应。该分析基于水平集小火焰模型,并适应腔室几何形状和均流特性的空间变化。分析了影响火焰对局部流动干扰的所有已知因素。三重分解技术将每个流量变量表示为长时间平均,周期性和湍流分量之和,用于检查声学运动和湍流运动之间的相互作用以及它们对火焰动力学的共同影响。作为具体示例,研究了在稳定涡流的燃烧器中通常观察到的简单火焰和包络火焰。由此产生的火焰响应被纳入三维声学分析中,以确定模型燃气轮机燃烧器的稳定性。结果在稳定性边界和声波特性方面与实验观察和数值模拟一致。特别地,包络的火焰趋于与声速振荡共振地耦合,导致燃烧振荡的大偏移。

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