TY - JOUR
T1 - Nonlinear time-series analysis of thermoacoustic oscillations in a solid rocket motor
AU - Guan, Yu
AU - Liu, Peijin
AU - Jin, Bingning
AU - Gupta, Vikrant
AU - Li, Larry K.B.
N1 - Funding Information:
This work was supported by the Research Grants Council of Hong Kong (Project Nos. 16235716 and 26202815 ). VG was supported by the National Natural Science Foundation of China (Grant No. 11672123 ) and by the Shenzhen Science and Technology Program (Grant No. JCYJ20170412151759222 ).
Publisher Copyright:
© 2018 Elsevier Inc.
PY - 2018/11
Y1 - 2018/11
N2 - Recent applications of nonlinear time-series analysis have shown that thermoacoustic systems can exhibit self-excited behavior more complex than simple period-1 oscillations. Such behavior has been comprehensively explored in the Rijke tube and in gas turbines, but less so in rocket engines. In this experimental study, we examine the thermoacoustic oscillations of a full-scale solid rocket motor (SRM) by means of nonlinear time-series analysis, namely phase portraits, Poincaré maps and recurrence plots. In contrast to conventional linear tools based on the Fourier transform, these nonlinear tools can enable unambiguous identification of different dynamical states, such as period-k states, quasiperiodicity and chaos. In this study, these tools reveal limit-cycle dynamics not reported before in an SRM, such as transient mode switching between unstable attractors in phase space, with transitions between period-2 and period-3 states. In summary, this study constitutes the first experimental application of nonlinear time-series analysis to a full-scale SRM, demonstrating an alternative to conventional linear tools for the characterization of nonlinear thermoacoustic oscillations in rocket engines.
AB - Recent applications of nonlinear time-series analysis have shown that thermoacoustic systems can exhibit self-excited behavior more complex than simple period-1 oscillations. Such behavior has been comprehensively explored in the Rijke tube and in gas turbines, but less so in rocket engines. In this experimental study, we examine the thermoacoustic oscillations of a full-scale solid rocket motor (SRM) by means of nonlinear time-series analysis, namely phase portraits, Poincaré maps and recurrence plots. In contrast to conventional linear tools based on the Fourier transform, these nonlinear tools can enable unambiguous identification of different dynamical states, such as period-k states, quasiperiodicity and chaos. In this study, these tools reveal limit-cycle dynamics not reported before in an SRM, such as transient mode switching between unstable attractors in phase space, with transitions between period-2 and period-3 states. In summary, this study constitutes the first experimental application of nonlinear time-series analysis to a full-scale SRM, demonstrating an alternative to conventional linear tools for the characterization of nonlinear thermoacoustic oscillations in rocket engines.
KW - Combustion instability
KW - Nonlinear dynamics
KW - Rocket engines
KW - Thermoacoustics
UR - http://www.scopus.com/inward/record.url?scp=85048184663&partnerID=8YFLogxK
U2 - 10.1016/j.expthermflusci.2018.06.002
DO - 10.1016/j.expthermflusci.2018.06.002
M3 - Journal article
AN - SCOPUS:85048184663
SN - 0894-1777
VL - 98
SP - 217
EP - 226
JO - Experimental Thermal and Fluid Science
JF - Experimental Thermal and Fluid Science
ER -