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- W2609961353 abstract "In this paper, the thermohydrodynamics of an evaporating droplet is investigated by using a single-component pseudopotential lattice Boltzmann model. The phase change is applied to the model by adding source terms to the thermal lattice Boltzmann equation in such a way that the macroscopic energy equation of multiphase flows is recovered. In order to gain an exhaustive understanding of the complex hydrodynamics during evaporation, a single droplet is selected as a case study. At first, some tests for a stationary (non-)evaporating droplet are carried out to validate the method. Then the model is used to study the thermohydrodynamics of a falling evaporating droplet. The results show that the model is capable of reproducing the flow dynamics and transport phenomena of a stationary evaporating droplet quite well. Of course, a moving droplet evaporates faster than a stationary one due to the convective transport. Our study shows that our single-component model for simulating a moving evaporating droplet is limited to low Reynolds numbers." @default.
- W2609961353 created "2017-05-05" @default.
- W2609961353 creator A5039035609 @default.
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- W2609961353 date "2017-04-27" @default.
- W2609961353 modified "2023-10-18" @default.
- W2609961353 title "Thermohydrodynamics of an evaporating droplet studied using a multiphase lattice Boltzmann method" @default.
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- W2609961353 doi "https://doi.org/10.1103/physreve.95.043310" @default.
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