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Sediment–Water Interface Flow with the Multiparticle Collision Dynamics
by
Matyka, Maciej
in
Algorithms
/ Civil Engineering
/ Classical and Continuum Physics
/ Collision dynamics
/ Computer simulation
/ Drag
/ Earth and Environmental Science
/ Earth Sciences
/ Exact solutions
/ Flow resistance
/ Flow simulation
/ Fluid dynamics
/ Fluid flow
/ Geotechnical Engineering & Applied Earth Sciences
/ Hydrogeology
/ Hydrology/Water Resources
/ Industrial Chemistry/Chemical Engineering
/ Porous media
/ Simulation
2017
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Sediment–Water Interface Flow with the Multiparticle Collision Dynamics
by
Matyka, Maciej
in
Algorithms
/ Civil Engineering
/ Classical and Continuum Physics
/ Collision dynamics
/ Computer simulation
/ Drag
/ Earth and Environmental Science
/ Earth Sciences
/ Exact solutions
/ Flow resistance
/ Flow simulation
/ Fluid dynamics
/ Fluid flow
/ Geotechnical Engineering & Applied Earth Sciences
/ Hydrogeology
/ Hydrology/Water Resources
/ Industrial Chemistry/Chemical Engineering
/ Porous media
/ Simulation
2017
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Do you wish to request the book?
Sediment–Water Interface Flow with the Multiparticle Collision Dynamics
by
Matyka, Maciej
in
Algorithms
/ Civil Engineering
/ Classical and Continuum Physics
/ Collision dynamics
/ Computer simulation
/ Drag
/ Earth and Environmental Science
/ Earth Sciences
/ Exact solutions
/ Flow resistance
/ Flow simulation
/ Fluid dynamics
/ Fluid flow
/ Geotechnical Engineering & Applied Earth Sciences
/ Hydrogeology
/ Hydrology/Water Resources
/ Industrial Chemistry/Chemical Engineering
/ Porous media
/ Simulation
2017
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Sediment–Water Interface Flow with the Multiparticle Collision Dynamics
Journal Article
Sediment–Water Interface Flow with the Multiparticle Collision Dynamics
2017
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Overview
Multiparticle collision dynamics is a relatively new algorithm of fluid flow simulations that has been applied mostly to flows around simple objects. One might ask how it behaves in more complex flows. We extend the basic algorithm to handle flows in porous media. For this, we introduce a particle-level drag force. The force hinders the flow, which results in global resistance to flow and decrease of permeability. The extended algorithm is validated in the flow through a porous channel and compared with an analytical solution. Some basic properties of the solver are investigated. Finally, we use the solver to capture solutions in the sediment–water interface flow.
Publisher
Springer Netherlands,Springer Nature B.V
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