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  2. SIMPLEC algorithm - Wikipedia

    en.wikipedia.org/wiki/SIMPLEC_algorithm

    The steps involved are same as the SIMPLE algorithm and the algorithm is iterative in nature. p*, u*, v* are guessed Pressure, X-direction velocity and Y-direction velocity respectively, p', u', v' are the correction terms respectively and p, u, v are the correct fields respectively; Φ is the property for which we are solving and d terms are involved with the under relaxation factor.

  3. SIMPLE algorithm - Wikipedia

    en.wikipedia.org/wiki/SIMPLE_algorithm

    SIMPLE is an acronym for Semi-Implicit Method for Pressure Linked Equations. The SIMPLE algorithm was developed by Prof. Brian Spalding and his student Suhas Patankar at Imperial College London in the early 1970s. Since then it has been extensively used by many researchers to solve different kinds of fluid flow and heat transfer problems. [1]

  4. SU2 code - Wikipedia

    en.wikipedia.org/wiki/SU2_code

    Free-form deformation (FFD) extensions, including Bézier curves and improved usability. Reorganization of the incompressible solver for future expansion. Harmonic Balance flow analysis capability. Algebraic transition model implementation. More and better boundary conditions (accuracy and convergence improvements).

  5. List of finite element software packages - Wikipedia

    en.wikipedia.org/wiki/List_of_finite_element...

    Free: Linux, Windows, Mac OS X: ADINA: 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 ...

  6. COMSOL Multiphysics - Wikipedia

    en.wikipedia.org/wiki/COMSOL_Multiphysics

    COMSOL Multiphysics is a finite element analyzer, solver, and simulation software package for various physics and engineering applications, especially coupled phenomena and multiphysics. The software facilitates conventional physics-based user interfaces and coupled systems of partial differential equations ( PDEs ).

  7. MOOSE (software) - Wikipedia

    en.wikipedia.org/wiki/MOOSE_(software)

    MOOSE (Multiphysics Object Oriented Simulation Environment) is an object-oriented C++ finite element framework for the development of tightly coupled multiphysics solvers from Idaho National Laboratory. [1] MOOSE makes use of the PETSc non-linear solver package and libmesh to provide the finite element discretization.