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Importance of the nozzle-exit boundary-layer state in subsonic turbulent jets
2018
Journal of Fluid Mechanics
To investigate the effects of the nozzle-exit conditions on jet flow and sound fields, large-eddy simulations of an isothermal Mach 0.9 jet issued from a convergent-straight nozzle are performed at a diameter-based Reynolds number of $1\times 10^{6}$ . The simulations feature near-wall adaptive mesh refinement, synthetic turbulence and wall modelling inside the nozzle. This leads to fully turbulent nozzle-exit boundary layers and results in significant improvements for the flow field and sound
doi:10.1017/jfm.2018.476
fatcat:y3mtvxexyjhu5ie2zqhv37kgsq