Mattner, T.2008-05-022008-05-02200716th Australasian Fluid Mechanics Conference (AFMC) / P. Jacobs et al. (eds), pp.1079-10829781864998948http://hdl.handle.net/2440/43104This paper reports results from a large-eddy simulation of a temporal mixing layer using the stretched-vortex subgrid stress and mixing models. The simulation achieves a Reynolds number of about 2×10 <sup>7</sup> when based on the momentum thickness. Linear growth of the momentum thickness and collapse of the mean velocity and scalar concentration profiles suggest that the flow is self-similar. Considerable variability is, however, observed in the Reynolds stress and integrated kinetic-energy dissipation rate.enCopyright status unknownLarge-eddy simulations of a turbulent mixing layer using the stretched-vortex subgrid modelConference paper003000174710.999/12340002881001000212-s2.0-7995281768765753Mattner, T. [0000-0002-5313-5887]