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NUMERICAL ANALYSIS OF COMBUSTION INSTABILTY AND ITS SUPPRESSION IN GAS TURBINE COMBUSTOR WITH SWIRLERS MODELED ON EV PREMIX BURNERS

机译:EV预混燃烧器模型燃气涡轮燃烧器中燃烧不稳定的数值分析及其燃气轮机燃烧器中的抑制

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Pressure oscillation in an industrial gas-turbine combustor is numerically investigated based on thermo-acoustic instability. The combustor has 37 EV premix burners through which methane and air are mixed and then injected into the chamber. First, acoustic eigenmodes and frequencies of the chamber are examined by adopting linear acoustic analysis. Next, combustion instabilities are simulated. In simulating instabilities, first, steady fuel/air mixing and flow characteristics established by the burner are investigated by numerical analysis with single burner. And then, based on the calculated flow data, the burners are modeled numerically via equivalent swirlers, which facilitates the numerical analysis with the whole combustion system including the chamber and numerous burners. Finally, reactive flow fields within the chamber are investigated numerically by unsteady analysis and thereby spontaneous instability is simulated. Based on the numerical results, scaling analysis is conducted to find out the instability mechanism in the combustor and a passive control method to suppress the instability is proposed and verified numerically.
机译:基于热声不稳定性,在数值研究工业气体涡轮机燃烧器中的压力振荡。燃烧器具有37 EV预混燃烧器,通过该燃烧器混合,然后将甲烷和空气喷射到腔室中。首先,通过采用线性声学分析检查腔室的声学特征模和频率。接下来,模拟燃烧不稳定性。在模拟稳定性中,通过单燃烧器的数值分析来研究由燃烧器建立的稳定燃料/空气混合和流动特性。然后,基于计算的流量数据,燃烧器通过等效旋流器以数值方式建模,这有利于整个燃烧系统的数值分析,包括腔室和众多燃烧器。最后,通过不稳定的分析来数量地研究腔室内的反应流场,从而模拟自发的不稳定性。基于数值结果,进行缩放分析,以找出燃烧器中的不稳定机制,并在数值上提出并验证了不稳定性的无源控制方法。

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