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A criterion for thermo-acoustic stability based on the flux of acoustic energy

机译:基于声能量的热声稳定性的标准

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This paper introduces a conservative criterion for thermo-acoustic stability. By subdividing a thermoacoustic system into a passive subsystem ? containing no source of acoustic energy ? and an active subsystem containing all sources, the criterion can be formulated as follows: For positive or zero growth rates, the passive subsystem cannot feed acoustic energy into the active part. If for a given frequency, the active subsystem absorbs acoustic energy at the interface, this stands in contradiction to the property of the passive subsystem to never feed into the active subsystem. Therefore the overall system cannot be unstable at that frequency. This holds without regard to the exact properties of the passive subsystem. This stability criterion may be regarded as a special case of the Acoustic Energy Dissipation/Production Potentiality introduced by Auregan and Starobinski (Acta Acustica united with Acustica 85 (6) 1999). Merely evaluating this criterion for all real-valued frequencies is insufficient. Instead, it is necessary to cover all positive growth rates, too. Finally, the present paper specifies an algorithm that avoids missing any instabilities in the (2D) complex plane, but allows the investigation of a 1D domain.? 2021 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:本文介绍了热声稳定性的保守标准。通过将热声系统细分为被动子系统?没有声能量的源?和包含所有来源的活动子系统,标准可以制定如下:对于正或零生长速率,被动子系统不能将声能馈送到有源部分。如果对于给定的频率,有源子系统在接口处吸收声能量,这是对无源子系统的属性矛盾,以永远不会进入有源子系统。因此整个系统在该频率上不能不稳定。这不考虑被动子系统的确切属性。这种稳定标准可以被认为是AURAGAN和Starobinski引入的声学能量耗散/生产潜力的特殊情况(Acta Acustara与Acustica 85(6)1999)。仅评估所有实值频率的该标准是不够的。相反,有必要涵盖所有积极的增长率。最后,本文指定了一种避免遗漏(2D)复杂平面中任何不稳定性的算法,而是允许调查1D域。? 2021燃烧研究所。由elsevier Inc.保留所有权利发布。

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