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- W4320341325 endingPage "105798" @default.
- W4320341325 startingPage "105798" @default.
- W4320341325 abstract "In this article, innovative formulations in the finite volume framework are proposed to tackle the thermal energy loss numerical issue in two-phase flow simulations with sharp interface and discontinuous properties, independently from the flow dynamics. The conservation of the formulation depends on several choices: the way the temperature equation is written and integrated, the hypothesis on the fluxes due to the discontinuity of the physical properties, and the space and time discretizations. After a presentation of the numerical methods considered in this study, a fully three-dimensional case is presented. At first the simulation only includes diffusion, and the convergence is quite good with the improvement proposed. Then, the drawbacks of the usage of one-fluid formulation with diffusion and convection are highlighted and characterized depending on the mesh size. Finally, several sets of coherent choices, named as formulations, are proposed and a genuinely conservative formulation with good abilities to predict the temperature is found and tested in a representative one-dimensional case." @default.
- W4320341325 created "2023-02-13" @default.
- W4320341325 creator A5081944047 @default.
- W4320341325 creator A5084701374 @default.
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- W4320341325 date "2023-03-01" @default.
- W4320341325 modified "2023-09-27" @default.
- W4320341325 title "Conservative formulations for heat transfer simulation with sharp interfaces and discontinuous properties in two-phase flows" @default.
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- W4320341325 doi "https://doi.org/10.1016/j.compfluid.2023.105798" @default.
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