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Autodesk CFD is a computational fluid dynamics simulation software that engineers and analysts use to intelligently predict how liquids and gases will perform.
Minimize the need for physical prototypes while providing deeper insight into fluid flow design performance: Autodesk CFD provides computational fluid dynamics software features and thermal simulation tools with improved reliability and performance. Compare design alternatives and better understand the implications of your choices before manufacturing.
Autodesk CFD provides engineers with a range of powerful tools for system design optimization:
The Application Programming Interface (API) and scripting functions expand the base capabilities of Autodesk CFD through the Decision Centre’s customization and automation of common tasks. In addition, the Decision Centre automates system design comparisons to speed up design-based decision-making.
Design study environment
Premium
Ultimate
Direct modeling with SimStudio Tools
✔
Defeaturing with SimStudio Tools
MultiCAD data exchange
Design study automation
Multi-scenario design review center
Model-centric interface
Customizable material databases
Heat sink, compact thermal, LED, and TEC models
Fan, porous media, HX, TIM, and PCB models
Non-Newtonian fluid materials
Point, wall, and bulk-flow data extraction
Pre- and post-processing API
Customizable report generator
Web and mobile storage, sharing, and viewing
FSI with Simulation Mechanical
Simulation Data Management with Vault
Export results to Showcase, 3ds max, VRED, Maya
Fluid flow
2D and 3D Cartesian
2D axisymmetric
Laminar flow
Turbulent flow
Incompressible flow
Subsonic flow
Compressible flow
Steady state (time-independent)
Transient (time-varying)
Lagrangian particle tracking
Two-fluid scalar mixing
Two-phase flows (humidity and steam)
Nucleate boiling
Height of fluid
Free surface (Volume of fluid)
Compressible liquid (water hammer)
Cavitation
Heat transfer
Conduction and conjugate heat transfer
Forced, natural, mixed convection
Thermal comfort calculation
Temperature-dependent heat source
Radiation heat transfer
Radiation through transparent media
Solar loading
Temperature-dependent emissivity
Joule heating
Intelligent meshing
Geometry mesh diagnostics
Automatic mesh sizing
Solution-adaptive mesh
Global and local size adjustment
Boundary-layer mesh enhancement
Interactive mesh-refinement regions
Extrusion meshing
Mesh growth-rate control
Fluid gap and thin solid refinement
Surface wrap meshing
K-epsilon
K-epsilon with intelligent wall formulation
Low Reynolds number K-epsilon
SST k-omega
SST k-omega SAS (Scale Adaptive Simulation)
SST k-omega DES (Detached Eddy Simulation)
SST K-omega RC (Smirnov Menter)
SST K-omega RC (Hellsten)
RNG
Eddy viscosity
Mixing length
Automatic turbulence startup
Laminar
Solid-body motion
User prescribed or fluid driven motion
Multiple rotating frame of reference
Linear
Angular
Combined linear and angular
Combined orbital and angular
Nutating
Sliding vane
Unconstrained (6 DOF) motion
High-performance solving
Multicore single machine
Microsoft HPC cluster
Cluster solving using Cloud Premium
Remote solving
CAD Standards ToolsParallel solving on multiple machines
Download and test CFD before you make your purchasing decision.Download Now
In order to work properly, your copy of CFD requires CFD Design Study Environment.
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