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Adjoint-based sensitivity analysis of low-order thermoacoustic networks using a wave-based approach

机译:基于波的方法的低阶热声网络伴随基于伴随的敏感性分析

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摘要

Strict pollutant emission regulations are pushing gas turbine manufacturers to develop devices that operate in lean conditions, with the downside that combustion instabilities are more likely to occur. Methods to predict and control unstable modes inside combustion chambers have been developed in the last decades but, in some cases, they are computationally expensive. Sensitivity analysis aided by adjoint methods provides valuable sensitivity information at a low computational cost. This paper introduces adjoint methods and their application in wave-based low order network models, which are used as industrial tools, to predict and control thermoacoustic oscillations. Two thermoacoustic models of interest are analyzed. First, in the zero Mach number limit, a nonlinear eigenvalue problem is derived, and continuous and discrete adjoint methods are used to obtain the sensitivities of the system to small modifications. Sensitivities to base-state modification and feedback devices are presented. Second, a more general case with non-zero Mach number, a moving flame front and choked outlet, is presented. The influence of the entropy waves on the computed sensitivities is shown.
机译:严格的污染物排放法规正在推动燃气轮机制造商开发在精益条件下运行的装置,其中燃烧不稳定性更容易发生。在过去的几十年中已经开发了预测和控制燃烧室内部不稳定模式的方法,但在某些情况下,它们是计算昂贵的。伴随方法辅助的敏感性分析提供了低计算成本的有价值的灵敏度信息。本文介绍了伴随方法及其在基于波的低阶网络模型中的应用,这些模型用作工业工具,预测和控制热声振荡。分析了两个热门的景观。首先,在零马赫数限制中,导出非线性特征值问题,并且连续和离散伴随方法用于获得系统的敏感性到小修改。提出了基本状态修改和反馈设备的敏感性。其次,提出了具有非零马赫数的更普通情况,移动火焰前部和窒息出口。显示了熵波对计算敏感性的影响。

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