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      <subfield code="a">Liu, Jun</subfield>
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      <subfield code="a">Tolle, Tobias</subfield>
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      <subfield code="a">Zuzio, Davide</subfield>
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      <subfield code="a">Estivalezes, Jean-Luc</subfield>
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      <subfield code="a">Damian, Santiago M.</subfield>
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      <subfield code="a">Bothe, Dieter</subfield>
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      <subfield code="a">Maric, Tomislav</subfield>
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      <subfield code="c">2024-07</subfield>
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      <subfield code="a">Incompressible two-phase flows that involve fluids with very different densities (high density ratios) are&#xd;
ubiquitous in natural and technical processes, and the one-field formulation of Navier-Stokes Equations&#xd;
(one-field NSE) is widely used to model such flows. The integral form of the one-field NSE is especially&#xd;
amenable for deriving and understanding the consistency between volume and mass conservation,&#xd;
required for incompressible two-phase flows. The phase indicator function further uniquely defines the&#xd;
mass flux, that must be consistently used in the mass conservation and the momentum conservation&#xd;
equation. These exact consistency requirements, derived from the integral form of the one-field NSE, are&#xd;
independent of the method used to model the fluid interface. Research into two-phase flow simulation&#xd;
methods for handling high density ratios is highly active; however, focusing primarily on the discrete&#xd;
level. In this work, we derive exact consistency requirements at the level of the mathematical model.&#xd;
These conditions must be tailored to the PDE discretization and fluid interface tracking methods, but they&#xd;
must be upheld. Since we develop numerical methods for simulating geometrically complex engineering&#xd;
multiphase flow systems, we discretize the one-field NSE with the consistency requirements using the&#xd;
unstructured Finite Volume method and validate and verify them for the unstructured Level Set / Front&#xd;
Tracking [1] method and plicRDF-isoAdvector, a flux-based geometrical Volume-of-Fluid method [2].</subfield>
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      <subfield code="a">Àrees temàtiques de la UPC::Informàtica::Arquitectura de computadors</subfield>
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      <subfield code="a">Ink-jet printing</subfield>
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      <subfield code="a">Rheology</subfield>
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      <subfield code="a">Digital twins (Computer simulation)</subfield>
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      <subfield code="a">Computational fluid dynamics</subfield>
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      <subfield code="a">Microfluidics</subfield>
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      <subfield code="a">Impressió de raig de tinta</subfield>
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      <subfield code="a">Reologia</subfield>
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      <subfield code="a">Rèpliques digitals (Simulació per ordinador)</subfield>
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      <subfield code="a">Dinàmica de fluids computacional</subfield>
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      <subfield code="a">Microfluídica</subfield>
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      <subfield code="a">The unstructured geometrical VOF method for industrial two-phase flows simulations with high density ratios</subfield>
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