Difference between revisions of "Tutorials by Tobias Holzmann"

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* '''affiliation''': Holzmann CFD
 
* '''affiliation''': Holzmann CFD
 
* '''contact''': <mail address='Tobias.Holzmann@Holzmann-cfd.de' description='author'>click here for email address</mail>
 
* '''contact''': <mail address='Tobias.Holzmann@Holzmann-cfd.de' description='author'>click here for email address</mail>
* '''OpenFOAM version''':  4.x (all tutorials are updated to 4.x since 23.11.16)
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* '''OpenFOAM version''':  v7
 
* '''published under''': GPL v3 license  
 
* '''published under''': GPL v3 license  
  
 
Go back to [https://wiki.openfoam.com/index.php?title=Day_15 Day 15].  
 
Go back to [https://wiki.openfoam.com/index.php?title=Day_15 Day 15].  
  
=[http://www.holzmann-cfd.de/index.php/en/tutorials-en Case collection]=
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=Case collection=
  
[http://www.holzmann-cfd.de/index.php/en/tutorials-en Here] you will find a large collection of cases, which you can use to further improve your knowledge and experience in OpenFOAM.
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Here you will find a large collection of cases, which you can use to further improve your knowledge and experience in OpenFOAM.
 +
The training cases are kept up-to-date and different versions could be downloaded.
  
==Meshing tutorials using snappyHexMesh==
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== Meshing, Solving, and Dynamic Mesh Training Cases for the Community ==
  
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/shm-solvers/thin-gap-valve How to mesh thin gap zones with snappyHexMesh]
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* [https://holzmann-cfd.com/community/training-cases/fan-rotation-ami Fan Rotation Simulation using AMI]
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/shm-solvers/gin-tonic-cht Generate a multi region mesh for a Gin Tonic case using snappyHexMesh]
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* [https://holzmann-cfd.com/community/training-cases/sneezing-simulation Sneezing Simulation (based on the Covid-19 disease)]
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/snappyhexmesh/shm-cellzones How to generate cellZones with snappyHexMesh]
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* [https://holzmann-cfd.com/community/training-cases/fan-rotation-ami Fan simulation with AMI and real boundary set-up]
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/snappyhexmesh/feature-edge How to use the feature-edge refinement correctly]
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* [https://holzmann-cfd.com/community/training-cases/sneezing-simulation Sneezing simulation with particle]
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/snappyhexmesh/meshing-a-helix Meshing a helix]
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* [https://holzmann-cfd.com/community/training-cases/thermal-electric-generator Heat-transfer with different materials]
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/snappyhexmesh/meshing-a-pipe Meshing a pipe]
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* [https://holzmann-cfd.com/community/training-cases/catalyst-heat-up Catalyst heat-up simulation with the multi-region approach]
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/snappyhexmesh/melting-pot Meshing a melting pot]
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* [https://holzmann-cfd.com/community/training-cases/vertical-axial-wind-turbine Vertical Axial Wind Turbine (VAWT) using the 6-Degree-of-Freedom library to create a flow-induced rotation scenario]
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/snappyhexmesh/sphere-meshing Meshing a sphere with layer generation]
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* [https://holzmann-cfd.com/community/training-cases/fluidic-oscillator Investigation into a fluidic oscillator (2D)]
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/shm-solvers/combustion-chamber Meshing a complex combustion chamber]
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* [https://holzmann-cfd.com/community/training-cases/falling-droplets Falling droplets simulation]
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/snappyhexmesh/snappymultiregion Multi-Region meshing]
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* [https://holzmann-cfd.com/community/training-cases/solar-chimney Solar Chimney for free convective (buoyancy-driven) flows]
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/snappyhexmesh/snappymultiregionlayer Multi-Region meshing and layer generation]
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* [https://holzmann-cfd.com/community/training-cases/combustion-chamber Meshing a complex combustion chamber]
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/snappyhexmesh/2d-wedge-mesh 2D wedge mesh generation]
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* [https://holzmann-cfd.com/community/training-cases/sphere-meshing Meshing a sphere with layer generation]
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/shm-solvers/hydraulic-jump-stream 2D wedge mesh generation for a hydraulic jump (#1)]
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* [https://holzmann-cfd.com/community/training-cases/magnus-effect 2D mesh generation of a cylinder to investigate into the Magnus effect]
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/shm-solvers/bifluidic-oscillator-vof 2D mesh generation for a bifluidic oscillator]
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* [https://holzmann-cfd.com/community/training-cases/complex-mesh-motion Interesting ACMI usage in an exciting geometry]
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/shm-solvers/tesla-s-one-way-valve 2D mesh generation for the Tesla's One-Way-Valve]
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* [https://holzmann-cfd.com/community/training-cases/gin-tonic Generate a multi-region mesh for a Gin Tonic case using snappyHexMesh]
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/shm-solvers/magnus-effect 2D mesh generation for a sphere]
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* [https://holzmann-cfd.com/community/training-cases/adaptive-mesh-refinement Adaptive Meshing Refinement (Pseudo 2D - Von Kármán Street)]
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/shm-solvers/hydraulic-jump 2D mesh generation for a hydraulic jump case (#2)]
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* [https://holzmann-cfd.com/community/training-cases/acmi-heat-transfer Heat-Transfer using ACMI for a Linear Motion]
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/dynamic-meshes/moving-rotor-ami AMI generation for a rotor]
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* [https://holzmann-cfd.com/community/training-cases/arbitrary-water-pump Generate baffles using snappyHexMesh for an arbitrary water pump]
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/dynamic-meshes/spiral-conveyor-ami AMI generation for a spiral conveyor]
 
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/dynamic-meshes/heating-acmi ACMI generation for a linear motion solver]
 
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/dynamic-meshes/arbitrary-coupled-mesh-interface ACMI generation for a rotating motion solver]
 
  
==Mesh conversion==
 
  
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/mesh-conversions/multi-region-fluent-mesh Multi-region Fluent mesh to multi-region OpenFOAM mesh]
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* [https://holzmann-cfd.com/community/training-cases/thin-gap-meshing How to mesh thin gap zones with snappyHexMesh]
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* [https://holzmann-cfd.com/community/training-cases/cell-zone-generation How to generate cellZones with snappyHexMesh]
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* [https://holzmann-cfd.com/community/training-cases/2d-rotational-axis-symmetric-meshing 2D wedge mesh generation]
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* [https://holzmann-cfd.com/community/training-cases/rotating-rotor-ami Moving Rotor using AMI]
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* [https://holzmann-cfd.com/community/training-cases/arbitrary-rotating-inlet-acmi ACMI generation for a rotating inlet cylinder]
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* [https://holzmann-cfd.com/community/training-cases/meshing-a-helix Meshing a helix]
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* [https://holzmann-cfd.com/community/training-cases/2d-arbitrary-mesh-interface AMI generation for a 2D case]
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* [https://holzmann-cfd.com/community/training-cases/meshing-a-pipe Meshing a pipe]
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* [https://holzmann-cfd.com/community/training-cases/feature-edge-refinement How to use the feature-edge refinement correctly]
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* [https://holzmann-cfd.com/community/training-cases/kaplan-turbine Kaplan Turbine with flow-induced 6-Degree-of-Freedom Library]
  
==Meshing and solving tutorial==
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== DAKOTA and OpenFOAM coupling ==
  
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/shm-solvers/falling-droplets Falling droplets (VOF)]
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* [https://holzmann-cfd.com/community/training-cases/geometric-variation Geometric Variation]
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/shm-solvers/plane-wall Conjugated Heat Transfer of a Plane Wall with Optimal Numerical Settings]
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* [https://holzmann-cfd.com/community/training-cases/teslas-one-way-valve Tesla’s One-Way-Valve]
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/shm-solvers/thin-gap-valve Thin Gap Flow Simulation]
 
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/shm-solvers/gin-tonic-cht Conjugated Heat Transfer in a Gin Tonic Glass]
 
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/shm-solvers/combustion-chamber Combustion chamber]
 
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/shm-solvers/bifluidic-oscillator-vof Bifluidic Oscillator (VOF)]
 
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/shm-solvers/tesla-s-one-way-valve Tesla's One-Way-Valve]
 
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/shm-solvers/magnus-effect Magnus Effect]
 
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/shm-solvers/hydraulic-jump-stream Hydraulic Jump (#1)]
 
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/shm-solvers/hydraulic-jump Hydraulic Jump (#2)]
 
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/shm-solvers/2t-engine-bc 2-Stroke Engine Boundary Condition]
 
  
==Meshing and solving using dynamic meshes==
 
  
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/dynamic-meshes/simple-acmi Simple ACMI Setup for an Rotating Inlet]
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== Christmas Community Competition Investigations ==
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/dynamic-meshes/moving-rotor-ami Moving Rotor using AMI] 
 
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/dynamic-meshes/spiral-conveyor-ami Spiral conveyor  using AMI]
 
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/dynamic-meshes/heating-acmi Heat Transfer using ACMI]
 
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/dynamic-meshes/arbitrary-coupled-mesh-interface Arbitrary rotating mesh geometry using ACMI]
 
* [http://www.holzmann-cfd.de/index.php/en/tutorials-en/dynamic-meshes/adaptive-meshing Adaptive Meshing Refinement (Pseude 2D - Von Kármán Street)]         
 
  
==Dakota and OpenFOAM coupling==
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* [https://holzmann-cfd.com/community/training-cases/suzannes-head The drag coefficient calculation of Suzannes head (2017)]
 
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* [https://holzmann-cfd.com/community/training-cases/teslas-one-way-valve The pitot tube investigation (2019)]
* [http://www.holzmann-cfd.de/index.php/en/dakota-coupling/geometric-variation Geometric Variation]
 
* [http://www.holzmann-cfd.de/index.php/en/dakota-coupling/dakota-tesla-s-one-way-valve Tesla's One-Way-Valve]
 
 
 
==Blender and OpenFOAM coupling==
 
 
 
* [http://www.holzmann-cfd.de/scripts/blenderScripts.tar.gz Script Template]
 

Latest revision as of 09:41, 20 May 2021

  • contributor: Tobias Holzmann
  • affiliation: Holzmann CFD
  • contact: click here for email address
  • OpenFOAM version: v7
  • published under: GPL v3 license

Go back to Day 15.

Case collection

Here you will find a large collection of cases, which you can use to further improve your knowledge and experience in OpenFOAM. The training cases are kept up-to-date and different versions could be downloaded.

Meshing, Solving, and Dynamic Mesh Training Cases for the Community


DAKOTA and OpenFOAM coupling


Christmas Community Competition Investigations