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Wim-Paul Breugem is specialized in fluid mechanics. He does fundamental research on turbulence, multiphase flows, flows in porous media and rheology using computational fluid dynamics, with applications in process, energy, environmental and maritime engineering and often in close collaboration with industrial partners.
More specifically, Breugem’s expertise covers: wall-bounded turbulent flows, turbulent drag reduction, atmospheric flows, suspension flows, bubbly flows, break-up of liquid jets, droplet coalescence, continuum modelling for porous-media and multiphase flows, slender-jet modelling, linear hydrodynamic stability analysis, Direct Numerical Simulation, Immersed Boundary Methods for particle-laden flows, Level-Set and Volume-of-Fluid methods for flows laden with deformable bubbles or drops, high-performance computing.
Applications Breugem has been working on, relate to: prilling for production of fertilizer pellets, rheology of dense suspensions used for 3D (extrusion-based) printing, sedimentation and fluidization processes, turbulent sediment transport through pipelines related to dredging applications, turbulent bed erosion near hydraulic structures or in dredging applications, turbulent flows over porous/permeable walls, shark-skin riblet textures or compliant (visco-elastic) coatings in maritime applications, ship air lubriction, by-pass pigging in pipelines, micro-fluidic flows driven by artificial cilia, and interannual climate variability in the tropical Atlantic region.
More specifically, Breugem’s expertise covers: wall-bounded turbulent flows, turbulent drag reduction, atmospheric flows, suspension flows, bubbly flows, break-up of liquid jets, droplet coalescence, continuum modelling for porous-media and multiphase flows, slender-jet modelling, linear hydrodynamic stability analysis, Direct Numerical Simulation, Immersed Boundary Methods for particle-laden flows, Level-Set and Volume-of-Fluid methods for flows laden with deformable bubbles or drops, high-performance computing.
Applications Breugem has been working on, relate to: prilling for production of fertilizer pellets, rheology of dense suspensions used for 3D (extrusion-based) printing, sedimentation and fluidization processes, turbulent sediment transport through pipelines related to dredging applications, turbulent bed erosion near hydraulic structures or in dredging applications, turbulent flows over porous/permeable walls, shark-skin riblet textures or compliant (visco-elastic) coatings in maritime applications, ship air lubriction, by-pass pigging in pipelines, micro-fluidic flows driven by artificial cilia, and interannual climate variability in the tropical Atlantic region.
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JOURNAL OF RHEOLOGYno. 2 (2024): 263-283
SSRN Electronic Journal (2023): 104498-104498
PHYSICAL REVIEW FLUIDSno. 12 (2023)
JOURNAL OF FLUID MECHANICS (2023)
O. J. Kramer,C. Van Schaik, J. J. Hangelbroek,P. J. De Moel, M. G. Colin, M. Amsing,E. S. Boek,W. P. Breugem,J. T. Padding,J. P. Van Der Hoek
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