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首页> 外文期刊>Journal of Thermodynamics >Thermoacoustic Instability in a Rijke Tube with a Distributed Heat Source
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Thermoacoustic Instability in a Rijke Tube with a Distributed Heat Source

机译:具有分布式热源的Rijke管中的热声不稳定性

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摘要

A Rijke tube with a distributed heat source is investigated. Driven by the widely existing thermoacoustic instability in lean premixed gas turbine combustors, this work aims to explore the physicochemical underpinning and assist in the elucidation and analysis of this problem. The heat release model consists of a row of distributed heat sources with individual heat release rates. The integrated heat release rate is then coupled with the acoustic perturbation for thermoacoustic analysis. A continuation approach is employed to conduct the bifurcation analysis and capture the nonlinear behaviour inherent in the system. Unlike the conventional approach by the Galerkin method, the acoustic equations are originally discretized using the Method of Lines (MOL) to build up a dynamic system. The model is first validated and shown to yield good predictions with available experimental data. Influences of multiple heat sources, time delay, and heat release distribution are then studied to reveal the extensive nonlinear characteristics involved in the case of a distributed heat source. It is found that distributed heat source plays an important role in determining the stability of a thermoacoustic system.
机译:研究了具有分布式热源的Rijke管。在稀薄的预混燃气轮机燃烧室中广泛存在的热声不稳定性的驱使下,这项工作旨在探索物理化学的基础,并有助于阐明和分析该问题。放热模型由一排具有独立放热率的分布式热源组成。然后,将积分的放热率与声学扰动耦合在一起,以进行热声分析。采用一种连续方法进行分叉分析并捕获系统固有的非线性行为。与传统的Galerkin方法不同,声学方程最初是使用线法(MOL)离散化以建立动态系统的。该模型首先经过验证,并显示可利用现有实验数据得出良好的预测。然后研究了多个热源,时间延迟和热释放分布的影响,以揭示分布式热源情况下涉及的广泛非线性特性。发现分布式热源在确定热声系统的稳定性中起重要作用。

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