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CFD MESHING ON BMW CAR Aim: For the given model, check and solve all geometrical errors on half portion and assign appropriate PIDs. Perform meshing with the given Target length and element Quality criteria. After meshing the half model, Do symmetry to the other side. Objective: - Target lengths for the different…
Dineshkumar Rajendran
updated on 05 Mar 2023
CFD MESHING ON BMW CAR
Aim:
For the given model, check and solve all geometrical errors on half portion and assign appropriate PIDs. Perform meshing with the given Target length and element Quality criteria. After meshing the half model, Do symmetry to the other side.
Objective:
- Target lengths for the different parts of a model are as follow:
Model: BMW M6
BMW M6 car model
Procedure:
Meshing for smooth edges
Deleting half car body
Performing topo clean up
- Front grill area:
Front grill region
Deleting and creating new surfaces
Geometry cleaned grill
Creating new surface
Wire frame mode
- Windows, rear lights, roof region and logo:
a,b: Geometry cleaned windows and rear lights
a, b: Logo geometry clean-up and wire frame mode
- Design feature and mirror:
Design feature of car
a, b: Design feature wire frame mode
Optical rear-view mirror
- Wheel and Base region:
Tyre PID and wire frame model
Using curve feature while topo clean-up
Base geometry clean-up
Checking interference between tyre and body
- After checking and performing topo-clean-up for the entire half car model. We need to perform geometry checks to find small cracks are unchecked faces extra which is not good for the geometry, therefore we need to perform checks and clean the geometry accordingly.
a, b: Checking for geometry checks
- Once the geometry is checked and has no errors, we can now assign names to different components using PID.
Assigned PID regions
PID table
- After assigning the names, we now to choose the quality criteria method. Choose open FOAM solver next to volumetric mesh and choose the given quality criteria below.
Quality criteria table
- Using the measure tool, we can calculate the smallest distance between to cons or hot points and depending on that, we can assign our minimum and maximum length accordingly in the mesh parameters, if we do not do this, we can get failed mesh.
Using measure tool
We need to mesh the components individually since the given mesh targets are different for each PID regions.
Assign the mesh parameters and quality parameters for each PID accordingly, assigning the correct min and max length will reduce mesh failure and off elements.
- Quality criteria for logo and grills region:
- Logo and grill surface mesh:
Logo surface mesh
Grills surface mesh
Grill surface mesh close view
- Rims and tyres, window and rear-view mirror surface mesh:
- Quality criteria and mesh parameters:
- Surface mesh:
Surface mesh of windows
Surface mesh of tyre
Surface mesh on Rear view mirror
- Silencer and lights:
- Quality criteria and mesh parameters for silencer:
- Surface mesh:
Surface mesh on silencer
Surface mesh on lights
- Body surface mesh:
Car body surface mesh
Since body PID region is in contact with various other PID, the mesh length variation at the boundary region of 2 different PID cause the mesh to erase or cause mesh failure. Therefore, while entering the perimeters under length in mesh drop down. Select the regions which are not in contact with the other meshed PID regions. This helps in avoided the mesh to be erased and can later be edited to erase the off elements.
Checking for off elements in entity mode of car body
After meshing, we can choose re-construct under shell mesh to reduce the off elements. And later the remaining off elements can be edited manually.
Using re-construct option to reduce off elements
- Final surface mesh of car model:
Complete car model with 0 off elements
- Performing symmetry on the car model:
Symmetry conditions window
Surface mesh on full car body after performing symmetry
Final car model
- Creating wind tunnel:
Using relative points tool
car model: 1306mm .................. (x)
Front surface distance (from reference points): 5875mm .................. (4x)
Back surface distance (from reference points): 8480mm .................. (6x)
Top surface distance (from reference points): 4323mm .................. (3x)
Wind tunnel
- Surface meshing of wind tunnel:
Surface mesh of wind tunnel
- Volumetric mesh of wind tunnel-car volume:
- Volume regions:
Volume between wind tunnel and car model
Car body single volume
Tyres volume
Silencer volume
Conclusions:
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