Difference between revisions of "Hauptseminar Porous Media SS 2021/Reaction diffusion advection with LB"

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{{Seminartopic
 
{{Seminartopic
 
|number=6
 
|number=6
|topic=Reaction-diffusion-advection with LB and particle coupling
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|topic=CANCELLED Reaction-diffusion-advection with LB and particle coupling
|speaker= TBD
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|speaker= Lukas Maier
|date=TBA
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|date=
|time=TBA
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|time=
 
|tutor=[[Ingo Tischler]]
 
|tutor=[[Ingo Tischler]]
 
|handout=
 
|handout=
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== Contents ==
 
== Contents ==
  
TBA
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The Lattice Boltzmann (LB) method is a computational tool to solve the Navier-Stokes equations to simulate fluid dynamics. Its applications are in many different research fields like porous media, biomedical drug transport or soil filtration. However with the obtained flow field this method can also be coupled with the reaction-diffusion-advection equation to render the behavior of multiple reactive species within this flow field. It is also possible to couple LB to particles directly to investigate e.g. swimming bacteria.
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In this talk the LB method should be discussed and how the coupling to other methods like the reaction-diffusion-advection equations or particle simulations can be handled. 
  
 
== Literature ==
 
== Literature ==
  
TBA
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<bibentry>
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kuron18a
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lee20a
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rettinger17a
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usabiaga13a
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</bibentry>

Latest revision as of 15:45, 9 June 2021

Date
Topic
CANCELLED Reaction-diffusion-advection with LB and particle coupling
Speaker
Lukas Maier
Tutor
Ingo Tischler

Contents

The Lattice Boltzmann (LB) method is a computational tool to solve the Navier-Stokes equations to simulate fluid dynamics. Its applications are in many different research fields like porous media, biomedical drug transport or soil filtration. However with the obtained flow field this method can also be coupled with the reaction-diffusion-advection equation to render the behavior of multiple reactive species within this flow field. It is also possible to couple LB to particles directly to investigate e.g. swimming bacteria.

In this talk the LB method should be discussed and how the coupling to other methods like the reaction-diffusion-advection equations or particle simulations can be handled.

Literature