Passive control of instabilities in combustion systems with heat exchanger

IF 1.4 4区 工程技术 Q3 ENGINEERING, MECHANICAL International Journal of Spray and Combustion Dynamics Pub Date : 2018-12-01 DOI:10.1177/1756827717731486
Aswathy Surendran, M. Heckl, N. Hosseini, Omkejan J. Teerling
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引用次数: 4

Abstract

One of the major concerns in the operability of power generation systems is their susceptibility to combustion instabilities. In this work, we explore whether a heat exchanger, an integral component of a domestic boiler, can be made to act as a passive controller that suppresses combustion instabilities. The combustor is modelled as a quarter-wave resonator (1-D, open at one end, closed at the other) with a compact heat source inside, which is modelled by a time-lag law. The heat exchanger is modelled as an array of tubes with bias flow and is placed near the closed end of the resonator, causing it to behave like a cavity-backed slit plate: an effective acoustic absorber. For simplicity and ease of analysis, we treat the physical processes of heat transfer and acoustic scattering occurring at the heat exchanger as two individual processes separated by an infinitesimal distance. The aeroacoustic response of the tube array is modelled using a quasi-steady approach and the heat transfer across the heat exchanger is modelled by assuming it to be a heat sink. Unsteady numerical simulations were carried out to obtain the heat exchanger transfer function, which is the response of the heat transfer at heat exchanger to upstream velocity perturbations. Combining the aeroacoustic response and the heat exchanger transfer function, in the limit of the distance between these processes tending to zero, gives the net influence of the heat exchanger. Other parameters of interest are the heat source location and the cavity length (the distance between the tube array and the closed end). We then construct stability maps for the first resonant mode of the aforementioned combustor configuration, for various parameter combinations. Our model predicts that stability can be achieved for a wide range of parameters.
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热交换器燃烧系统不稳定性的被动控制
发电系统的可操作性的主要问题之一是它们对燃烧不稳定性的敏感性。在这项工作中,我们探讨了热交换器(家用锅炉的一个组成部分)是否可以作为抑制燃烧不稳定性的被动控制器。燃烧室被建模为一个四分之一波谐振器(一维,一端打开,另一端关闭),内部有一个紧凑的热源,该热源由时滞定律建模。热交换器被建模为一组带有偏流的管,并被放置在谐振器的封闭端附近,使其表现得像一个腔背狭缝板:一个有效的吸声器。为了便于分析和简单,我们将热交换器中的传热和声散射物理过程视为两个独立的过程,它们被一个无穷小的距离分开。采用准稳态方法对管阵的气声响应进行了建模,并将换热器的传热假设为散热器进行了建模。通过非定常数值模拟,得到了换热器的换热函数,即换热器的换热对上游速度扰动的响应。结合气声响应和换热器传递函数,在两者距离趋近于零的极限条件下,给出了换热器的净影响。其他感兴趣的参数是热源位置和空腔长度(管阵列和封闭端之间的距离)。然后,我们构建了上述燃烧室配置的第一共振模式的稳定性图,用于各种参数组合。我们的模型预测在很宽的参数范围内可以实现稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Spray and Combustion Dynamics
International Journal of Spray and Combustion Dynamics THERMODYNAMICS-ENGINEERING, MECHANICAL
CiteScore
2.20
自引率
12.50%
发文量
21
审稿时长
>12 weeks
期刊介绍: International Journal of Spray and Combustion Dynamics is a peer-reviewed open access journal on fundamental and applied research in combustion and spray dynamics. Fundamental topics include advances in understanding unsteady combustion, combustion instability and noise, flame-acoustic interaction and its active and passive control, duct acoustics...
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