CMPS Capability and GUI Availability Map
This page maps each simulation capability to the GUI panel where it is configured and to the theory section that explains its formulation and practical effect.
Capability map
| Capability | GUI area | What it changes | Detailed guide |
|---|---|---|---|
| 2D / 3D, serial / parallel / cluster | Simulation Manager | Problem dimension and execution layout | Run, Parallel and Grid Setup |
| Planar / axisymmetric mesh interpretation | Grid | Geometric form of conservation equations | Grid setup |
| Inviscid / laminar / GE-RANS / SAS | Physics | Carrier-flow and turbulence equations | Physics Models |
| Species and reactions | Physics + boundary/initial data | Composition transport and reaction sources | Species options |
| Dilute dispersed phase and IATE | Physics | Separate particle/droplet equations and closures | Dispersed phase |
| Homogeneous VOF | Physics / VOF | One-fluid multiphase composition and interface transport | VOF options |
| Spatial order, gradients, limiters, fluxes | Numerics | Accuracy, dissipation and robustness | Spatial Numerics |
| CFL, relaxation, accelerators, transient stepping | Solution Control | Nonlinear convergence and time accuracy | Solution Control |
| Agglomeration multigrid / FMG | Solution Control | Coarse-grid acceleration and initialization | Multigrid and FMG |
| Linear solver and GPU | Advanced Controls | Implicit linear-solve robustness, memory and speed | Linear Solver |
| Inlets, outlets, walls, propellant, symmetry | Boundary Conditions | Physical domain closure | Boundary Conditions |
| Initialization | Initial Conditions | Starting solution state | Initial Conditions |
| EOS and material properties | Materials | Thermodynamics and transport | Materials and Zones |
| Fluid/solid zones and MRF | Cell Zones | Zone equations/materials and rotating-frame transport | Cell Zones |
| NeuralFlow | AI Solver | Learned recurrent solver correction/training | NeuralFlow Options |
| Residuals, autosave, reports, probes | Monitoring | Convergence assessment and output | Monitoring and Reports |
| Contours, lines, streamlines, slices, integrals | Visualization | Postprocessing only | Visualization |
How to interpret GUI effects
Physics changes the modeled problem or closure. Accuracy changes discretization/model fidelity. Stability / convergence changes nonlinear/linear robustness. Cost changes CPU/GPU time or memory. Initialization changes the starting state. Reporting / display does not change the solved flow field.