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- W2024447511 abstract "This paper concerns an experimental study of dispersion and evaporation of liquid droplets in differentially-heated mixing layers. An ambient temperature air stream is seeded dilutely with water droplets and it is brought into contact with a heated stream of air at a higher velocity in a two dimensional mixing layer configuration. Measurement techniques based on light attenuation and scattering are utilized to unveil some of the qualitative features of dispersion and evaporation. Experimental results provide some useful information towards a better understanding of complex processes in two-phase turbulent flows with heat and mass transfer. For example, the droplet dispersion and evaporation in the mixing layer appears to grow linearly at first. However, its growth rate decreases with increasing mixing and evaporation downstream until much of the droplet stream entrained into the mixing layer is evaporated. In these experiments, evidence is also found for the presence of large scale structures in isothennal mixing layers. Their presence in the differentially-heated mixing layers is a subject of our present investigations. The droplet-laden mixing layer structure is also influenced by the well-known naturally occuring shear layer instabilities." @default.
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- W2024447511 date "1991-06-24" @default.
- W2024447511 modified "2023-09-26" @default.
- W2024447511 title "Dispersion and evaporation of liquid droplets in a turbulent, planarmixing layer" @default.
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- W2024447511 doi "https://doi.org/10.2514/6.1991-2312" @default.
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