Download Siemens Simcenter FloEFD 2205.0001 v5873 for Siemens NX-Simcenter 3D x64
Link download Siemens Simcenter FloEFD 2205.0001 v5873 win64 full cracked
Working with Siemens Simcenter FloEFD 2205.0001 v5873 for Siemens NX-Simcenter 3D
Interface language: English, German, French, Chinese, Japanese, Russian
▪ Microsoft Windows 10 Pro or Enterprise 64-bit
▪ For solver: Microsoft Windows Server 2012, Microsoft Windows Server 2012 R2,
Microsoft Windows Server 2016, Microsoft Windows Server 2019, Microsoft Windows
Server 2016 with HPC Pack 2016, Microsoft Windows Server 2019 with HPC Pack 2019
▪ Microsoft Office 365, Microsoft Office 2019, Microsoft Office 2016, Microsoft Office 2013
Siemens NX 1847 series (tested versions 1855, 1867)
Siemens NX 1872 series (tested versions 1872, 1876, 1880, 1884, 1888, 1892)
Siemens NX 1899 series (tested versions 1899, 1903, 1907, 1911, 1915, 1919).
The update option must not be used to install NX1899. Use of update option leads to missing files required for FLOEFD. An installation from scratch is required.
Siemens NX 1926 series (tested version 1934)
Siemens NX 1953 series (tested versions 1953, 1957, 1961, 1965, 1969, 1973)
Siemens NX 1980 series (tested versions 1980, 1984, 1988, 1992, 1996, 2000)
Siemens NX 2007 series (tested versions 2007, 2008, 2011, 2019, 2023, 2027)
Siemens NX 2206 series (tested version 1500, 1700, 3001, 4001, 4020, 5001)
Simcenter 3D 2019.2 series (tested versions 1880, 1892)
Simcenter 3D 2020.1 series (tested version 1919)
Simcenter 3D 2020.2 series (tested version 1946)
Simcenter 3D 2021.1 series (tested version 1961)
Simcenter 3D 2021.2 series (tested version 1996)
Simcenter 3D 2022.1 series (tested version 2008)
Simcenter 3D 2206 series (tested version 2206)
▪ Teamcenter (tested version 13.2)
Description: FloEFD for NX/Simcenter 3D applications for modeling flow and heat transfer in liquids and gases in an appropriate CAD environment.
FloEFD is fully integrated into the respective CAD environment and uses solvers based on computational fluid dynamics (CFD) technology
For CAD-dependent versions, work directly with the model in the corresponding CAD environment
There is no need to convert the geometry to another format, which often leads to a loss of quality The task of calculating fluid dynamics and heat transfer is fully synchronized with the model at any time
Minimization of efforts, and as a result, errors in the process of synchronizing the set hydrogasdynamic problem and the model
Automatic detection of changes in the model.
There is no need for “manual” construction of geometry describing the area occupied by liquid / gas
Automatic detection of the area occupied by liquid/gas.
The same graphical controls are used as in other modules of the respective CAD
Very easy to learn
Easy to use
Uses the element tree of the CAD model.
Intuitive and fully interactive
Using when creating a project / processing the results of model elements selected in the graphics window / model tree
Visualization of calculation results in the form of static and animated images directly in the graphics window
Support for exporting results to MS Excel, Word. Ability to play and record animation
Support for multi-configuration model
For an effective multi-parametric study, the possibility of cloning projects, automatic launch of a series of calculations are implemented.
Automated to reduce the number of cases when analysis of the setup and calculation results requires the involvement of specialists in the field of fluid dynamics and heat transfer
Robust and fully automatic grid generator
Uses a unique turbulence and boundary layer model
Automatic control of solution convergence.
Reliable and accurate numerical methods and physical models
Large set of physical models
Ability to calculate very complex structures and physical phenomena.
Computational Fluid Dynamics (CFD) and allows you to analyze a wide range of complex problems, including:
• Analysis of hydro-aerodynamics and heat transfer of two – and three-dimensional models
• Analysis of external and internal flows
• Analysis of steady and unsteady flow
• The flow of incompressible liquid and compressible gas, including combustible mixtures, at subsonic,
transonic, supersonic and hypersonic flow regimes
• Water vapor condensation
• Calculation of relative air humidity in gas streams
• Flow in non-Newtonian fluids (only laminar flow regime)
• Flow in a compressible fluid (fluid density depends on pressure)
• Flows in real gases
• Analysis of laminar, turbulent and unsteady flows
• Analysis of vortex flows and fans
• Analysis of flows with solids
• Analysis of heat transfer within and between liquids and solids
• Analysis of heat transfer inside solids in the absence of an enveloping flow
• Calculation of thermal contact resistance
• Calculation of electrical contact resistance
• Thermoelectric coolers
• Heat transfer by radiation
• Joule heating
• Currents with gravity effects (also known as buoyancy effect)
• Porous media
• Heat pipes
• Heat transfer in printed circuit boards
• Heat transfer in perforated plates
• The flow of aerosol streams
• Accounting for the roughness of bodies in the flow
• Accounting for tangential wall movement (shifting and rotation)
• Flow in rotating devices
• Cavitation in liquid flows
• Combustion in gas mixtures
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