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Finite element software for structural, fluid, heat transfer, electromagnetic, and multiphysics problems, including fluid-structure interaction and thermo-mechanical coupling: Adina R&D: Proprietary commercial software: Autodesk Simulation: Finite Element software of Autodesk: Autodesk: Proprietary commercial software: Windows: ANSYS
Structural verification and code-checking according to different industrial standards SimScale: Multiphysics simulation (CFD, FEA, Thermal Analysis) applied for structural and civil engineering SketchUp: BIM & 3D modeling software applied for civil & structural engineering STAAD: BIM & 3D structural analysis & design software for structural ...
LS-DYNA originated from the 3D FEA program DYNA3D, developed by Dr. John O. Hallquist at Lawrence Livermore National Laboratory (LLNL) in 1976. [4] DYNA3D was created in order to simulate the impact of the Full Fuzing Option (FUFO) or "Dial-a-yield" nuclear bomb for low altitude release (impact velocity of ~ 40 m/s).
Modeling, structural analysis, engineering and design of models with member, plate, wall, folded plate, shell, and solid elements RSTAB CAD / CAE: Modeling, structural analysis, engineering and design of beam, frame or truss structures Donya Labs Simplygon: CAD: Remeshing processing CAD into real-time renderable mesh DP Technology ESPRIT CAM
Autodesk Revit is a building information modeling software for architects, structural engineers, mechanical, electrical, and plumbing (MEP) engineers, and contractors. The original software was developed by Charles River Software, founded in 1997, renamed Revit Technology Corporation in 2000 and acquired by Autodesk in 2002.
The practical application of FEM is known as finite element analysis (FEA). FEA, as applied in engineering, is a computational tool for performing engineering analysis. It includes the use of mesh generation techniques for dividing a complex problem into smaller elements, as well as the use of software coded with a FEM algorithm.