Causality and intrinsic thermoacoustic instability modes
Direct numerical simulation of a confined laminar premixed flame has been performed in an anechoic combustor, showing self-sustained intrinsic thermoacoustic oscillations. Theoretical predictions based on acoustic jump relations and the n − τ model for the flame are presented and causality concerns are discussed.
Courtine, Emilien +6 more
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Universality in spectral condensation. [PDF]
Pavithran I +8 more
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Effects of Acoustic Excitation on the Combustion Instability of Hydrogen-Methane Lean Premixed Swirling Flames. [PDF]
Deng K +4 more
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Analysis of Pressure Fluctuation Characteristics of Central Swirl Combustors Based on Empirical Mode Decomposition. [PDF]
Wang X, Zhang X, Yang C, Li H, Liu Y.
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Research on Combustion State System Diagnosis Based on Voiceprint Technology. [PDF]
Yan J, Wang Y, An L, Shen G.
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Radhakrishnan R +4 more
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Deep learning for predicting the occurrence of tipping points. [PDF]
Zhuge C, Li J, Chen W.
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A review: hemocompatibility of magnetic nanoparticles and their regenerative medicine, cancer therapy, drug delivery, and bioimaging applications. [PDF]
Malehmir S +7 more
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Heterodyne background-oriented schlieren for the measurement of thermoacoustic oscillations in flames. [PDF]
Tasmany S +5 more
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Fast automated adjoints for spectral PDE solvers. [PDF]
Skene CS, Burns KJ.
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