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Titlebook: Droplets and Sprays: Simple Models of Complex Processes; Sergei S. Sazhin Book 2022 The Editor(s) (if applicable) and The Author(s), under

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https://doi.org/10.1007/978-3-642-77902-2urface is saturated. Hence, the rate of droplet evaporation is equal to the rate of vapour diffusion from its surface to ambient gas. These are known as the hydrodynamic models of droplet evaporation. The analysis starts with empirical correlations which are not directly linked with any evaporation
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Lars Lundqvist,Lars Olof Perssonporation, based on the analytical solution to the equation for component diffusion inside liquid droplets, is described. An original analytical solution to the component diffusion equation derived under the assumption that droplet radius is constant is described. The generalisation of this solution
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John Bachtler,Keith Clement,Philip Rainesve engine conditions) the temperature at the water–fuel interface can reach water nucleation temperature. When this happens, the fuel droplet starts disintegrating via puffing and/or micro-explosion processes leading to rapid enhancement of their evaporation rates. Two simple models, designed to pre
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Die Adressaten des Verwertungsgebotesows considering the two-way coupling between the dispersed and carrier phases, the effects of non-spherical droplets, limitations of the Effective Thermal Conductivity/Effective Diffusivity (ETC/ED) models, effects of the interaction between droplets, effects of the moving interface due to evaporati
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Spray Formation and Penetration,conversion of the jet into liquid sheets and ligaments, disintegration of ligaments into relatively large droplets (primary break-up) and break-up of large droplets into smaller ones (secondary break-up). The following stages of spray formation are considered in this chapter: instability of a jet em
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