首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >A NOVEL THEORETICAL APPROACH TO PASSIVE CONTROL OF THERMO-ACOUSTIC OSCILLATIONS: APPLICATION TO DUCTED HEAT SOURCES
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A NOVEL THEORETICAL APPROACH TO PASSIVE CONTROL OF THERMO-ACOUSTIC OSCILLATIONS: APPLICATION TO DUCTED HEAT SOURCES

机译:被动控制热声振荡的一种新的理论方法:在热源中的应用

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In this paper, we develop a linear technique that predicts how the stability of a thermo-acoustic system changes due to the action of a generic passive feedback device or a generic change in the base state. From this, one can calculate the passive device or base state change that most stabilizes the system. This theoretical framework, based on adjoint equations, is applied to two types of Rijke tube. The first contains an electrically-heated hot wire and the second contains a diffusion flame. Both heat sources are assumed to be compact so that the acoustic and heat release models can be decoupled. We find that the most effective passive control device is an adiabatic mesh placed at the downstream end of the Rijke tube. We also investigate the effects of a second hot wire and a local variation of the cross-sectional area but find that both affect the frequency more than the growth rate. This application of adjoint sensitivity analysis opens up new possibilities for the passive control of thermo-acoustic oscillations. For example, the influence of base state changes can be combined with other constraints, such as that the total heat release rate remains constant, in order to show how an unstable thermo-acoustic system should be changed in order to make it stable.
机译:在本文中,我们开发了一种线性技术,该技术可预测热声系统的稳定性如何由于通用无源反馈设备的作用或基态的通用变化而改变。由此,可以计算出最稳定系统的无源器件或基本状态变化。这种基于伴随方程的理论框架适用于两种类型的Rijke管。第一个包含电加热的热丝,第二个包含扩散火焰。假定两个热源都是紧凑的,因此可以将声学模型和散热模型分离。我们发现,最有效的被动控制装置是放置在Rijke管下游端的绝热网。我们还研究了第二根热线的影响和横截面积的局部变化,但发现两者对频率的影响都比对增长率的影响更大。伴随灵敏度分析的这种应用为热声振荡的被动控制开辟了新的可能性。例如,基本状态变化的影响可以与其他约束条件结合使用,例如总放热率保持恒定,以显示如何更改不稳定的热声系统以使其稳定。

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