Quasi-molecular modeling of a single supercooled large droplet impact
•The temperature and transport coefficients are recovered.•The free parameters of the model are obtained in an optimization process.•Droplet impingement on both dry and wet surfaces is simulated.•Deeper understanding of the SLD dynamics in aeronautical conditions is the goal. A mesoscale model for d...
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Veröffentlicht in: | Applied mathematical modelling 2016-04, Vol.40 (7-8), p.4560-4571 |
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Hauptverfasser: | , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | •The temperature and transport coefficients are recovered.•The free parameters of the model are obtained in an optimization process.•Droplet impingement on both dry and wet surfaces is simulated.•Deeper understanding of the SLD dynamics in aeronautical conditions is the goal.
A mesoscale model for droplet dynamics based on a quasi-molecular approach is proposed. It considers the interaction between quasi-molecules within a single liquid droplet, each quasi-molecule representing an agglomeration of a large number of actual water molecules. The goal is to improve the understanding of the dynamics of large droplet collisions over dry or wet surfaces at velocities typical of aeronautical applications. This detailed analysis will eventually be used to refine the macroscopic Eulerian description of the water impingement process by providing numerical correlations for splashing and bouncing phenomena relevant for in-flight icing applications. Based on the Equipartition Theorem, approaches for extracting macroscopic quantities such as temperature and transport coefficients from the quasi-molecular method are discussed. A proper choice of the free parameters of the model that leads to accurate values of the macroscopic properties is also addressed. |
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ISSN: | 0307-904X |
DOI: | 10.1016/j.apm.2015.11.043 |