Based on the benchmark results in [1] for a 2D rising bubble, we present the extension towards 3D providing test cases with corresponding reference results, following the suggestions in [2]. Additionally, we include also an axisymmetric configuration which allows 2.5D simulations and which provides further possibilities for validation and evaluation of numerical multiphase flow components and software tools in 3D
International audienceA series of benchmarks based on the physical situation of “phase inversion” be...
A series of benchmarks based on the physical situation of "phase inversion" between two incompressib...
We present the high performance implementation of a new algorithm for simulating multiphase flows wi...
We perform 3D incompressible two-phase flow simulations of rising droplets. Based on a similar 2D be...
Benchmark configurations for quantitative validation and comparison of incompressible interfacial fl...
Benchmark configurations for quantitative validation and comparison of incompressible interfacial fl...
Benchmark configurations for quantitative validation and comparison of incompressible interfacial fl...
Benchmark configurations for quantitative validation and comparison of incompressible interfacial fl...
In this contribution further development of our in-house FEM based parallel 3D simulation tool FeatF...
Bubble dynamics play a critical role in the hydrodynamics of fluidized beds and significantly affect...
Benchmark configurations for quantitative validation and comparison of incompressible interfacial fl...
Summary: The paper describes the need for multiphase flow modeling in industrial flow simulations in...
International audienceA series of benchmarks based on the physical situation of “phase inversion” be...
The rise of bubbles in viscous liquids is not only a very common process in many industrial applicat...
International audienceA series of benchmarks based on the physical situation of “phase inversion” be...
International audienceA series of benchmarks based on the physical situation of “phase inversion” be...
A series of benchmarks based on the physical situation of "phase inversion" between two incompressib...
We present the high performance implementation of a new algorithm for simulating multiphase flows wi...
We perform 3D incompressible two-phase flow simulations of rising droplets. Based on a similar 2D be...
Benchmark configurations for quantitative validation and comparison of incompressible interfacial fl...
Benchmark configurations for quantitative validation and comparison of incompressible interfacial fl...
Benchmark configurations for quantitative validation and comparison of incompressible interfacial fl...
Benchmark configurations for quantitative validation and comparison of incompressible interfacial fl...
In this contribution further development of our in-house FEM based parallel 3D simulation tool FeatF...
Bubble dynamics play a critical role in the hydrodynamics of fluidized beds and significantly affect...
Benchmark configurations for quantitative validation and comparison of incompressible interfacial fl...
Summary: The paper describes the need for multiphase flow modeling in industrial flow simulations in...
International audienceA series of benchmarks based on the physical situation of “phase inversion” be...
The rise of bubbles in viscous liquids is not only a very common process in many industrial applicat...
International audienceA series of benchmarks based on the physical situation of “phase inversion” be...
International audienceA series of benchmarks based on the physical situation of “phase inversion” be...
A series of benchmarks based on the physical situation of "phase inversion" between two incompressib...
We present the high performance implementation of a new algorithm for simulating multiphase flows wi...