CMPSTheory & User Reference Manual
CMPS Capability and GUI Availability Map
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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

CapabilityGUI areaWhat it changesDetailed guide
2D / 3D, serial / parallel / clusterSimulation ManagerProblem dimension and execution layoutRun, Parallel and Grid Setup
Planar / axisymmetric mesh interpretationGridGeometric form of conservation equationsGrid setup
Inviscid / laminar / GE-RANS / SASPhysicsCarrier-flow and turbulence equationsPhysics Models
Species and reactionsPhysics + boundary/initial dataComposition transport and reaction sourcesSpecies options
Dilute dispersed phase and IATEPhysicsSeparate particle/droplet equations and closuresDispersed phase
Homogeneous VOFPhysics / VOFOne-fluid multiphase composition and interface transportVOF options
Spatial order, gradients, limiters, fluxesNumericsAccuracy, dissipation and robustnessSpatial Numerics
CFL, relaxation, accelerators, transient steppingSolution ControlNonlinear convergence and time accuracySolution Control
Agglomeration multigrid / FMGSolution ControlCoarse-grid acceleration and initializationMultigrid and FMG
Linear solver and GPUAdvanced ControlsImplicit linear-solve robustness, memory and speedLinear Solver
Inlets, outlets, walls, propellant, symmetryBoundary ConditionsPhysical domain closureBoundary Conditions
InitializationInitial ConditionsStarting solution stateInitial Conditions
EOS and material propertiesMaterialsThermodynamics and transportMaterials and Zones
Fluid/solid zones and MRFCell ZonesZone equations/materials and rotating-frame transportCell Zones
NeuralFlowAI SolverLearned recurrent solver correction/trainingNeuralFlow Options
Residuals, autosave, reports, probesMonitoringConvergence assessment and outputMonitoring and Reports
Contours, lines, streamlines, slices, integralsVisualizationPostprocessing onlyVisualization

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.