Mitigation of limit cycle oscillations in a turbulent thermoacoustic system via delayed acoustic self-feedback

被引:3
作者
Sahay, Ankit [1 ]
Kushwaha, Abhishek [1 ]
Pawar, Samadhan A. A. [1 ]
Midhun, P. R. [1 ]
Dhadphale, Jayesh M. M. [1 ]
Sujith, R. I. [1 ]
机构
[1] Indian Inst Technol Madras, Dept Aerosp Engn, Chennai 600036, Tamil Nadu, India
关键词
COMBUSTION INSTABILITY; MUTUAL SYNCHRONIZATION; PERIODIC-ORBITS; AMPLITUDE DEATH; STABILIZATION; PULSATIONS;
D O I
10.1063/5.0129512
中图分类号
O29 [应用数学];
学科分类号
070104 ;
摘要
We report the occurrence of amplitude death (AD) of limit cycle oscillations in a bluff body stabilized turbulent combustor through delayed acoustic self-feedback. Such feedback control is achieved by coupling the acoustic field of the combustor to itself through a single coupling tube attached near the anti-node position of the acoustic standing wave. We observe that the amplitude and dominant frequency of the limit cycle oscillations gradually decrease as the length of the coupling tube is increased. Complete suppression (AD) of these oscillations is observed when the length of the coupling tube is nearly 3 / 8 times the wavelength of the fundamental acoustic mode of the combustor. Meanwhile, as we approach this state of amplitude death, the dynamical behavior of acoustic pressure changes from the state of limit cycle oscillations to low-amplitude chaotic oscillations via intermittency. We also study the change in the nature of the coupling between the unsteady flame dynamics and the acoustic field as the length of the coupling tube is increased. We find that the temporal synchrony between these oscillations changes from the state of synchronized periodicity to desynchronized aperiodicity through intermittent synchronization. Furthermore, we reveal that the application of delayed acoustic self-feedback with optimum feedback parameters completely disrupts the positive feedback loop between hydrodynamic, acoustic, and heat release rate fluctuations present in the combustor during thermoacoustic instability, thus mitigating instability. We anticipate this method to be a viable and cost-effective option to mitigate thermoacoustic oscillations in turbulent combustion systems used in practical propulsion and power systems.
引用
收藏
页数:11
相关论文
共 61 条
  • [1] Active control of combustion instability: Theory and practice
    Annaswamy, AM
    Ghoniem, AF
    [J]. IEEE CONTROL SYSTEMS MAGAZINE, 2002, 22 (06): : 37 - 54
  • [2] Total and partial amplitude death in networks of diffusively coupled oscillators
    Atay, FM
    [J]. PHYSICA D-NONLINEAR PHENOMENA, 2003, 183 (1-2) : 1 - 18
  • [3] On optimal stabilization of periodic orbits via time delayed feedback control
    Basso, M
    Genesio, R
    Giovanardi, L
    Tesi, A
    Torrini, G
    [J]. INTERNATIONAL JOURNAL OF BIFURCATION AND CHAOS, 1998, 8 (08): : 1699 - 1706
  • [4] On the use of Helmholtz resonators for damping acoustic pulsations in industrial gas turbines
    Bellucci, V
    Rohr, P
    Paschereit, CO
    Magni, F
    [J]. JOURNAL OF ENGINEERING FOR GAS TURBINES AND POWER-TRANSACTIONS OF THE ASME, 2004, 126 (02): : 271 - 275
  • [5] Benner H, 2002, J KOREAN PHYS SOC, V40, P1046
  • [6] Suppression of Spontaneous Gas Oscillations by Acoustic Self-Feedback
    Biwa, Tetsushi
    Sawada, Yoshiki
    Hyodo, Hiroaki
    Kato, Soichiro
    [J]. PHYSICAL REVIEW APPLIED, 2016, 6 (04):
  • [7] Amplitude Death in Coupled Thermoacoustic Oscillators
    Biwa, Tetsushi
    Tozuka, Satoshi
    Yazaki, Taichi
    [J]. PHYSICAL REVIEW APPLIED, 2015, 3 (03):
  • [8] Time-delay feedback controller for amplitude reduction in vortex-induced vibrations
    Dai, H. L.
    Abdelkefi, A.
    Wang, L.
    Liu, W. B.
    [J]. NONLINEAR DYNAMICS, 2015, 80 (1-2) : 59 - 70
  • [9] Oscillation quenching and phase-flip bifurcation in coupled thermoacoustic systems
    Dange, Suraj
    Manoj, Krishna
    Banerjee, Subham
    Palmer, Samadhan A.
    Mondel, Sirshendu
    Sujith, R., I
    [J]. CHAOS, 2019, 29 (09)
  • [10] Ditto W, 2002, NATURE, V415, P736, DOI 10.1038/415736b