2021
DOI: 10.3390/aerospace8030060
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Generation and Mitigation Mechanism Studies of Nonlinear Thermoacoustic Instability in a Modelled Swirling Combustor with a Heat Exchanger

Abstract: In the present work, 3D Unsteady Reynolds-Averaged Navier-Stokes (URANS) simulations are performed to investigate the generation and mitigation mechanism of combustion-sustained thermoacoustic instabilities in a modelled swirl combustor. The effects of (1) swirling number SN, (2) inlet air flow rate Va and (3) inlet temperature Ti on the amplitudes and frequencies of swirling combustion-excited limit cycle oscillations are examined. It is found that the amplitude of acoustic fluctuations is increased with incr… Show more

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Cited by 19 publications
(7 citation statements)
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“…In addition to the BVM model used to describe the progress of the global reaction, a laminar flamelet-generated manifold library with a presumed probability density function (beta-PDF) with a unity Lewis number assumption (Le i = 1) is used to determine the composition of the reacted and nonreacted fractions of the fluid. In this methodology, a library is used to tabulate mean species mass fractions Y i based on mean mixture fraction Z, its fluctuation Z ′′ and a scalar dissipation rate X as shown in equations ( 9) and (10):…”
Section: Numerical Setupmentioning
confidence: 99%
See 1 more Smart Citation
“…In addition to the BVM model used to describe the progress of the global reaction, a laminar flamelet-generated manifold library with a presumed probability density function (beta-PDF) with a unity Lewis number assumption (Le i = 1) is used to determine the composition of the reacted and nonreacted fractions of the fluid. In this methodology, a library is used to tabulate mean species mass fractions Y i based on mean mixture fraction Z, its fluctuation Z ′′ and a scalar dissipation rate X as shown in equations ( 9) and (10):…”
Section: Numerical Setupmentioning
confidence: 99%
“…8 Thermoacoustic instabilities are challenging to resolve as they often occur having reached higher technology readiness levels where making design modification is more costly and prohibitive. 9 Aero engines often utilize swirling flows which can improve fuel-oxidizer mixing, enhance flame anchoring within the combustion chamber 10 and provide the basis for pre-filming airblast fuel atomization commonly studied and used in aero engines. 11 The acoustically compact nature of the flame, however, can further complicate the concerns regarding thermoacoustic instabilities in such burners.…”
Section: Introductionmentioning
confidence: 99%
“…The heat to sound energy conversion is generally caused by the coupling between the heat release rate pulsation and the internal acoustic field in the combustion chamber. [9][10][11][12] With the increasing stringent requirement of low-emission and high combustion efficiency, combustion instability becomes more popular in the new generation of gas turbines. To suppress and predict thermoacoustic oscillations in combustion systems, 13,14 it is essential to figure out the mechanism of thermoacoustic instability.…”
Section: Introductionmentioning
confidence: 99%
“…Environmental pollution brings serious ecological problems (Matsuzawa et al 2001;Baumard et al 1998), and automobile exhaust pollution is one of the sources of serious environmental pollution, so it is urgent to reduce automobile emissions (Zhang et al 2021;Sun et al 2021;Lichtfouse et al 1997). Many countries have formulated strict emission standards to improve environmental quality (Qian et al 2019a(Qian et al , 2019bPark et al 2019).…”
Section: Introductionmentioning
confidence: 99%