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- W107784842 abstract "A new discrete vortex model is proposed and applied to reveal the underlying physics of the vortex pairing, a key process to turbulent mixing layer evolution. The model accounts for the finite size of each localized vorticity region as a vortex quadrupole and describes a selfrotating elliptic vortex deformable in a stretching flowfield due to the presence of other vortices. It is demonstrated that the coalescence of pairing vortices can be recognized as a resonance phenomenon which takes place, through interaction between a pair of quadrupoles, when the magnitude of the stretching rate in the vorticity regions exceeds that of the self-rotating velocity. The streakline pattern outside of the vortices, calculated for a temporally developing mixing layer, is in fairly good agreement with existing numerical calculation results; thus it is expected to provide a powerful and economical, analytical tool to approach turbulent combustion as well, combined with an appropriate combustion-related formalism." @default.
- W107784842 created "2016-06-24" @default.
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- W107784842 date "1993-01-01" @default.
- W107784842 modified "2023-09-26" @default.
- W107784842 title "Proposed Discrete Vortex Model for Vortex Pairing" @default.
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- W107784842 doi "https://doi.org/10.2514/5.9781600866241.0389.0401" @default.
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