2024.1
Prepare your model and run the simulation.
Prepare your model for a general AcuSolve simulation.
Define radiation conditions and create emissivity models.
Define solar radiation conditions.
View new features for HyperMesh CFD 2024.1.
Learn the basics and discover the workspace.
Discover HyperMesh CFD functionality with interactive tutorials and community resources.
Solution-centric workflows allow you to traverse through modeling environments using a dedicated UI layer.
Create, open, import, and save models.
Use the Convert tool to convert entire models between data types.
Manage CAD, FE, and 2D parametric sketch geometry.
Generate surface/volume mesh by defining mesh controls, or interactively create and edit 2D surface mesh.
Set up the simulation model, materials, domains, and boundaries.
Define thermal radiation conditions.
Define participating media radiation conditions.
Use the Physics tool to define the solar radiation settings used in the simulation. Here you can specify the global parameters for solar radiation heat flux.
Use the Model tool to create, delete, and import/export solar radiation models. These models are utilized to calculate the solar heat flux on applied surfaces.
Use the Surface tool to apply solar radiation properties to selected surfaces. Solar heat flux is calculated on these surfaces based on the defined solar radiation model.
Define direct, derived, and constrained mesh motion.
Define output conditions, run the simulation, and view the results.
AcuTrace is particle tracer that runs as a post-processor to AcuSolve.
Prepare your model for wind tunnel analysis using ultraFluidX.
Post-process the simulation results by creating visualizations and measurements.
Automate simulation processes with templates and utility scripts.
Once the baseline model is prepared, you can define morph volumes, morph geometry, create design shapes and run DOE studies. These tool work for both AcuSolve and ultraFluidX-based workflows.
More resources for AcuSolve and ultraFluidX solvers.
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