Showing 75 open source projects for "domain"

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  • 1

    2d Heat advection Parallelized

    MPI based Parallelized C Program code to solve for 2D heat advection.

    Type - 2D Grid - Structured Cartesian Case - Heat advection Method - Finite Volume Method Approach - Flux based Accuracy - First order Scheme - Explicit, QUICK Temporal - Unsteady Parallelized - MPI (for cluster environment) Inputs: [ Length of domain (LX,LY) Time step - DT Material properties - Conductivity (k or kk) Density - (rho) Heat capacity - (cp) Boundary condition and Initial condition. ] Setup: The left and top edges are heated to 100 C and the right and bottom boundaries are heated to 0 C. The flow is along the main diagonal.
    Downloads: 0 This Week
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  • 2

    3D Heat advection C code

    A C Program code to solve for Heat advection in 3D Cartesian grid.

    Type - 3D Grid - Structured Cartesian Case - Heat advection Method - Finite Volume Method Approach - Flux based Accuracy - First order Scheme - Explicit, QUICK Temporal - Unsteady Parallelized - No Inputs: [ Length of domain (LX,LY,LZ) Time step - DT Material properties - Conductivity (k or kk) Density - (rho) Heat capacity - (cp) Boundary condition and Initial condition. ] Setup : The left, top and inside plane boundary is at 100 C and the right, bottom and outside plane boundary is at 0 C. The flow is along the main diagonal.
    Downloads: 0 This Week
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  • 3

    2D Heat advection C code

    A C Program code to solve for Heat advection in 2D Cartesian grid.

    Type - 2D Grid - Structured Cartesian Case - Heat advection Method - Finite Volume Method Approach - Flux based Accuracy - First order Scheme - Explicit, QUICK Temporal - Unsteady Parallelized - No Inputs: [ Length of domain (LX,LY) Time step - DT Material properties - Conductivity (k or kk) Density - (rho) Heat capacity - (cp) Boundary condition and Initial condition. ] Setup : The left and top boundary is at 100 C and the right and bottom boundary is at 0 C. The flow is along the main diagonal.
    Downloads: 0 This Week
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  • 4

    3D Heat convection C code

    A C Program code to solve for Heat convection in 3D Cartesian grid.

    Type - 3D Grid - Structured Cartesian Case - Heat convection Method - Finite Volume Method Approach - Flux based Accuracy - First order Scheme - Explicit, QUICK Temporal - Unsteady Parallelized - No Inputs: [ Length of domain (LX,LY) Time step - DT Material properties - Conductivity (k or kk) Density - (rho) Heat capacity - (cp) Boundary condition and Initial condition. ] Setup : The top, bottom, front and back boundaries are heated to 100 C. The left boundary is inlet (Velocity = 1m/s along X direction) and at an Inlet temperature of 30 C and the right boundary is outlet.
    Downloads: 0 This Week
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  • 5

    2D Heat convection C code

    A C Program code to solve for Heat convection in 2D Cartesian grid.

    Type - 2D Grid - Structured Cartesian Case - Heat convection Method - Finite Volume Method Approach - Flux based Accuracy - First order Scheme - Explicit, QUICK Temporal - Unsteady Parallelized - No Inputs: [ Length of domain (LX,LY) Time step - DT Material properties - Conductivity (k or kk) Density - (rho) Heat capacity - (cp) Boundary condition and Initial condition. ] Setup : The top and bottom boundaries are heated to 100 C. The left boundary is inlet (Velocity = 1m/s along X direction) and at an Inlet temperature of 30 C and the right boundary is outlet.
    Downloads: 0 This Week
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  • 6

    3d axisymmetric heat diffusion C code

    A C Program code to solve for Heat diffusion in 3D Axi-symmetric grid.

    Type - 3D Grid - Axisymmetric Case - Heat diffusion Method - Finite Volume Method Approach - Flux based Accuracy - First order Scheme - Explicit Temporal - Unsteady Parallelized - No Inputs: [ Length of domain (LR,LZ,LH) Time step - DT Material properties - Conductivity (k or kk) Density - (rho) Heat capacity - (cp) Boundary condition and Initial condition. ] Setup - Periphery heated to 500 C Top to 500 C Bottom to 500 C
    Downloads: 0 This Week
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  • 7

    2d axisymmetric heat diffusion C code

    A C Program code to solve for Heat diffusion in 2D Axi-symmetric grid.

    Type - 2D Grid - Axisymmetric Case - Heat diffusion Method - Finite Volume Method Approach - Flux based Accuracy - First order Scheme - Explicit Temporal - Unsteady Parallelized - No Inputs: [ Length of domain (LR,LZ) Time step - DT Material properties - Conductivity (k or kk) Density - (rho) Heat capacity - (cp) Boundary condition and Initial condition. ] Setup - Periphery heated to 200 C Top to 300 C Bottom to 100 C
    Downloads: 0 This Week
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  • 8

    3d heat conduction parallelized

    MPI based Parallelized C Program code to solve for 3D heat conduction.

    Type - 3D Grid - Structured Cartesian Case - Heat conduction Method - Finite Volume Method Approach - Flux based Accuracy - First order Scheme - Explicit Temporal - Unsteady Parallelized - Yes Inputs: [ Length of domain (LX,LY,LZ) Time step - DT Material properties - Conductivity (k or kk) Density - (rho) Heat capacity - (cp) Boundary condition and Initial condition. ] Setup : The six boundaries are heated to 100 C, 200 C, 300 C, 400 C, 500 C, 600 C respectively.
    Downloads: 0 This Week
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  • 9

    3d Heat conduction C code

    A C Program code to solve for Heat conduction in 3D Cartesian grid.

    Type - 3D Grid - Structured Cartesian Case - Heat Conduction Method - Finite Volume Method Approach - Flux based Accuracy - First order Scheme - Explicit Temporal - Unsteady Parallelized - No Inputs: [ Length of domain (LX,LY,LZ) Time step - DT Material properties - Conductivity (k or kk) Density - (rho) Heat capacity - (cp) Boundary condition and Initial condition. ] Setup : The six boundaries are heated to 100 C, 200 C, 300 C, 400 C, 500 C and 600 C respectively.
    Downloads: 0 This Week
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  • 10

    SFML-simple-sim

    Simple ball collision simulation in C++ SFML

    This is very simple ball collision simulation in 2d powered by SFML graphics in C++ language. This is my hobby project where i learn and test my skills in simulating and optimization with huge number of balls.
    Downloads: 0 This Week
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  • 11
    ============================= THIS CODE IS DEPRECATED ============================= For updated information about MTSA visit: http://mtsa.dc.uba.ar
    Downloads: 0 This Week
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  • 12

    KEMP

    A FDTD solver for electromagnetic wave simulations on a GPU cluster

    KEMP is a fast FDTD solver on a GPU-based cluster. The FDTD (Finite-Difference Time-Domain) method is a popular numerical method for electromagnetic field simulations. KEMP enables hardware accelerations suitable for multi-GPU, multi-core CPU and GPU cluster. KEMP also provide easy configuration by using Python scripting language.
    Downloads: 0 This Week
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  • 13
    Agent.GUI

    Agent.GUI

    The Project moved to github https://github.com/EnFlexIT/AgentWorkbench

    The project has moved to github https://github.com/EnFlexIT/AgentWorkbench Agent.GUI is a simulation framework and toolkit based on the JADE framework. It provides functionalities for time aspects, agent-environment interaction, visualization and load balancing, Furthermore, the included application focuses the usability for end users.
    Downloads: 0 This Week
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  • 14
    Acoustic FDTD Solver (AC2D) -- is a software to simulate acoustic wave propagation in two dimensions based on the finite-difference time-domain (FDTD) method.
    Downloads: 0 This Week
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  • 15

    WOLFSIM: Wideband Optical FDTD Simulator

    FDTD Electomagnetic Wave Simulation Software

    WOLFSIM is a Finite-Difference Time-Domain electromagnetic simulator, designed to be easy to use but still very powerful, developed and maintained by researchers at North Carolina State University. It's features include: -1D, 2D, and 3D structures that are periodic in 1 or 2 dimensions -Materials that are anisotropic in permittivity and conductivity -Obliquely incident sources -Built-in vectorial (i.e. full polarization) near-to-far-field transformation See these publications for full details on the algorithm: http://www.ece.ncsu.edu/oleg/files-wiki/6/62/SPIE_12_Miskiewicz_wolfsim3D.pdf http://www.ece.ncsu.edu/oleg/files-wiki/1/13/OptExpress07_OH.pdf
    Downloads: 2 This Week
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  • 16
    DArtikel!

    DArtikel!

    Learn the articles of German words.

    Learn words in german that you know at your own pace. With this system you can add the words you knew in a day and then do exercises with them. Written by: Jovanny Pablo Cruz Gómez. Computer Engineering Student. IPN, ESIME Culhuacan, Mexico City.
    Downloads: 0 This Week
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  • 17
    IMEP-Spice interface
    The developed graphical interface is based on the SKILL language which is a Lisp dialect used as a scripting language and PCell (Parameterized Cells) description language used in many EDA software suites by Cadence Design Systems.
    Downloads: 0 This Week
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  • 18
    vTclFF_DensForce

    vTclFF_DensForce

    Form-Finding of Cable Net Structures using the Force Density Method

    vTcl FF DensForce is a software developed for form-finding of linear network elements working under axial force using the "force density" method. __________________________________________ vTcl FF DensForce es un software de busqueda de forma para mallado de elementos lineales trabajando a fueza axil utilizando el metodo de "densidad de fuerza".
    Downloads: 0 This Week
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  • 19
    Vector,quaternion,matrix math library

    Vector,quaternion,matrix math library

    Free vector,quaternion,matrix math library

    Over 75 C++ function for working with vectors, matrix and quaternions. Inside the package there is no cycles, if's, classes or structures. Ideal for designing 3D engines. Headlines of functions are intuitive. For each headline there is a one line comment in Russian. Matrix are presented in OpenGL form 0 4 8 12 1 5 9 13 2 6 10 14 3 7 11 15 Now we are working on adding 50+ more functions for processing the planes, splines, bezier curves and interpolation methods.
    Downloads: 3 This Week
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  • 20

    CUDA-SPHERE-FWD-MEEG

    CUDA accelerated spherical model forward solution for EEG/MEG

    ...The 1-Sphere forward solution for the MEG and the 4-Sphere forward solution for the EEG is implemented in CUDA C and an accelerated solution is obtained using the NVIDIA GPU when the solution is calculated for a large number of dipoles (on the order of 15000 and above) and sensor locations. Speedup by a factor of 22 and 32 is obtained for the EEG and MEG solution respectively when compared to the fastest CPU implementation available in the public domain. The complete source code and pre-compiled binaries are also made available via an open source license (GPL Version 3). A CUDA enabled NVIDIA graphics card is required to use the software.
    Downloads: 0 This Week
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  • 21
    SimuSpace

    SimuSpace

    Simuspace is an realistic environnement simulator

    The first goal of this project is to create a realistic environnment simulator including most of the last scientist discovery. The domain are astrophysics, geophysics, electromagnetics, ... The second goal of this project is the creation of an interface to use this environnment. In particular the fact that it is possible to connect/command/control some automatic tools (robot, sensor, ... ) note : les images utilisés proviennent de http://www.photo-libre.fr
    Downloads: 0 This Week
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  • 22
    CD++Builder is an Eclipse plug-in that integrates varied applications and utilities that aids in creating CD++ DEVS models, simulating and analyzing results. Among these applications, CD++Modeler provides a graphical editor for coupled and DEVS-Graph
    Downloads: 0 This Week
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  • 23
    The Digital Communication Systems Lib: This library contains digital communucations systems implementations, such as BSPK and MIMO - WOFDM. Various OpenSource Projects: 1. Password/Username/Domain Analyzer
    Downloads: 0 This Week
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  • 24
    A repository for data models for use in environmental modeling and analysis. First project is a pipeline data model.
    Downloads: 0 This Week
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  • 25
    All pairs n-body simulation of electromagnetic forces on charged particles, adapted from Nvidia SDK 3.2 sample. Uses Lorentz force from EM fields via the Biot-Savart law for moving charged particles (uses relative velocity). Relativistic.
    Downloads: 0 This Week
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