Search Results for "finite elelement methods" - Page 2

Showing 47 open source projects for "finite elelement methods"

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  • 1

    Nonlocal and Gradient Elasticity

    Assessment of high order one-dimensional approximation schemes

    These Matlab scripts illustrate the numerical solution of two one-dimensional tensile rods equipped with integro-differential and strain-gradient constitutive laws by means of classical Hermitian and Lagrangian finite element discretizations, B-spline finite element discretizations and C∞ generalized finite element discretizations. Reference M. Malagù, E. Benvenuti, C. A. Duarte, and A. Simone. One-dimensional nonlocal and gradient elasticity: Assessment of high order approximation schemes...
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  • 2

    finiteDiff

    Program for solving the Schrödinger equation

    This little set of programs compute the solutions to one and three dimensional Schrödinger equations with different potentials. Explicit, implicit and eigenvalue methods are included. The explicit and implicit method are provided in C++ whereas the matrix method is implemented as a MATLAB scipt. All these method use finite differences.
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  • 3

    mSim_npsat

    Groundwater flow and transport simulation Matlab Toolbox

    The code has moved to https://bitbucket.org/giorgk/msim. The version here is outdated. mSim toolbox is a suite of Matlab functions which are primarily used to simulate Non Point Source Pollution in Groundwater aquifers based on Finite element methods. The current version of mSim solves the following equations in steady state: 1) Groundwater flow equation. 2) Particle Tracking. 3) 1D Advection dispersion equation. In addition mSim provides a number of functions which assist...
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  • 4

    OpenXfem++

    OpenXfem++ is an XFEM (eXtended Finite Element Method) written in C++.

    OpenXfem++ is an XFEM (eXtended Finite Element Method) written in C++ using object-oriented techniques. It supports propagation of multiple two dimensional cracks. Furthermore, it allows composite materials to be modeled on a structured mesh which is independent of the inclusions. The implementation is described in the following article An extended finite element library S Bordas, PV Nguyen, C Dunant, A Guidoum, H Nguyen‐Dang International Journal for Numerical Methods in Engineering 71...
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  • 5

    Visual Two Zone Model

    Build up groundwater numerical modeling

    The Visual Two-Zone Model (Visual TWZN) is freeware software to build up groundwater numerical modeling, in both radial and vertical flow components trough an abstraction well in layered aquifers. The conceptual model and computer native code was developed by Rushton and Redshaw (1979), Rathod and Rusthon (1984 and 1992), and the graphical user interface was developed by our Group Member, the hydrogeologist Noél Hernández Laloth. The model, based on finite-difference approximations using...
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  • 6

    Java Fast Method Call Graph Generator

    Analysis tool that generates method call graphs

    The project's aim is to develop a fast Method Call Graph generator for the Java Programming Language. The search proceedure combines a Finite State Machine and ad hoc parsing to allow for fast access to method definitions and method calls within the source code.
    Downloads: 1 This Week
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  • 7

    SPSens

    Stochastic parameter sensitivity analysis for chemical networks

    SPSens is a complete software package written in C that estimates parameter sensitivities for stochastic models of chemical and biochemical reaction networks using Monte Carlo (MC) stochastic simulations. It is possible to estimate sensitivities with respect to system parameters using the following algorithms: finite difference methods (crude monte carlo, common reaction path, coupled finite differences); likelihood ratio methods; and regularized pathwise derivatives. Additionally the package...
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  • 8

    ElemFreGalerkin

    A tutorial Galerkin meshfree code

    Meshfree or meshless methods were born to replace the traditional finite element in applications where meshing a complex geometry and/or excessive remeshing is involved. This code, written by Vinh Phu Nguyen, implements one and two dimensional Element Free Galerkin (EFG) method which is one of the most common meshfree methods for elasticity. It also implements Partition of Unity based enrichment for weak and strong discontinuities. The method and the implementation are described...
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  • 9

    Extensible Cochlear Modelling Framework

    Software to simulate the cochlea

    A library that extends the finite element library deal.II (written in C++, see www.deal.II.org) by providing classes and methods to support the design of numerical cochlear models.
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  • 10

    Last Java Collection Library

    Java library to work with scalar arrays as usual Collections

    The package allows to work with scalar arrays as usual collections. The problem with a scalar array Java templates don't support scalar types as generic parameters. Java code working with collection interfaces such as List or Collection is inapplicable for arrays. Some libraries supply methods to work with object array. These methods are generic and built-in types int, boolean, long, short, byte, double, float suffer. The number of scalar type is small and finite. There are realization...
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  • 11

    XFEM

    XFEM implementation in MATLAB

    The extended finite element method (XFEM) classified, one of the partition of unity method (PUM), allows discontinuities to be simulated independently of the mesh. This is possible by adding appropriate functions to the FE approximation basis, for example, the Heaviside function. The discontinuities can evolve in time, without a need for a conforming mesh. A MATLAB implementation of the XFEM written by VP Nguyen, is given here. The interaction of cracks and crack-inclusion interaction...
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  • 12

    LIME

    LIME is a software tool for creating multiphysics simulation codes.

    The Lightweight Integrating Multiphysics Environment for coupling codes (LIME) is a small software package for creating multiphysics simulation codes. LIME is intended to be especially useful when separate computer codes (which may be written in any standard computer language) already exist to solve di fferent parts of a multiphysics problem. LIME provides the key high-level software (written in C++), a well defi ned approach (with example templates), and interface requirements to enable the...
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  • 13

    ViennaMath

    A symbolic math kernel in C++

    ViennaMath provides a symbolic math kernel which can be used either for compile-time processing, or for run-time evaluation. Unlike other symbolic math implementations, ViennaMath aims at providing a fast math layer for use with numerical methods such as the finite element method (cf. ViennaFEM)
    Downloads: 2 This Week
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  • 14

    firStudio

    FIR filter design tool

    firStudio is a versatile tool for the design of Finite Imp[ulse Response (FIR) filters based on windowing methods and the equiripple Park-McClellan method. Features: Design of an FIR filter based on the windowed method (using rectangular, Hamming, Hanning, triangular, Kaiser-Bessel, Dolph-Chebychev and Blackman-Harris window functions) and the equiripple Park-McClellan method. Filter length can either be specified or estimated based on filter parameters. Design of low...
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  • 15
    ***** MOVED TO GITHUB: http://github.com/frgomes/jquantlib ***** JQuantLib provides a free, open-source and comprehensive framework for quantitative finance. It's a 100% Java translation of QuantLib, which is written in C++. JQuantLib provides pricing valuation of a wide range of asset classes, methods and models.
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  • 16
    FEMTA
    Easy to use 3D truss analyzer using finite element methods.
    Downloads: 1 This Week
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  • 17
    ce::StateCore
    StateCore is a generic finite state machine (FSM), based on the state pattern and written in C++. - Project: ceStateCore.sourceforge.net - CorEngine Blog: CorEngine.wordpress.com
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  • 18
    Geometric modeling, mesh generation and definition of boundary conditions for the numerical solution PDE problems by finite element and finite volume methods.
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  • 19
    This is a graphical computation of the Laplace/Poisson Equation done in VC. You input a multiple rectangular domain and compute the equation using finite difference methods. It is dependent of libParserFunction.
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  • 20
    A repository of Direct Numerical Simulation codes (Full solutions of the Navier Stokes Equations in fluid dynamics) in various geometries using a mix of high-order finite-difference and spectral methods.
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  • 21
    Framework for blockstructured adaptive finite volume methods. Provides MPI-parallelized variant of the Berger-Oliger AMR algorithm for Beowulf-clusters. Uses Clawpack. Visualization and conversion tools for HDF4 files included.
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  • 22
    Seismic Wave Propagation in 2D acoustic or elastic media using the following methods: Staggered-Grid Finite Difference Method, Spectral Element Method, Interior-Penalty Discontinuous Galerkin Method, and Isogeometric Method.
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