Simulation Software

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  • 1

    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.
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  • 2
    2D Structural Analysis

    2D Structural Analysis

    Determine the bending moments, shear forces, axial forces and displace

    2D Structural Analysis in Python by Ritchie Vink A collection examples of 2D Finite Element Analysis (FEA) made with Jupyter Notebook Lab - https://jupyter.org/ To install Jupyter - https://jupyter.org/install ===== App is available on Play Store -> https://play.google.com/store/apps/details?id=com.ulm.struct If you want to download a python editor for your android smartphone follow this link -> https://play.google.com/store/apps/details?id=com.ulm.python
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  • 3

    2D current density calculator

    Copper plane current density

    Simulate electric current density in any conductive plane shape described by a bitmap image.
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  • 4
    2DSPH-Simulator

    2DSPH-Simulator

    Smoothed particle hydrodynamics simulator

    Attention V2 is now Online: Simple 2D SPH Simulator with some special functions. It's possible to load data with two different methods. One based on geometry objects, the second one on placing every SPH particle on it's own. It's possible to save simulations and to restart calculations from this safepoints. A tempSave-file is written to restart simulations, if they crash from an earlier point. Now in v2 an example is added with a FEM beam and a moving piston. Both are hardcoded in the code and must be changed if you want to use it otherwise. Now it can be used only 1 bar and 1 piston, for future it will be changed. Video of textcase: http://www.youtube.com/watch?v=TLYVSWkhXBI Software is tested and runs stable with up two 5000 SPH particles. Known Problems: If there are more than 15000-20000 SPH particles, after some simulationssteps the calculation slows down and gains all memory. Currently I have no idea why!
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  • 5

    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.
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  • 6

    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
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  • 7

    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.
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  • 8

    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.
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  • 9
    This project will use 3D Human Emulation using sensors to pickup human movements and displaying them on GUI for analysis.
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  • 10
    CFD scientific software. Provides simulation of 3D CFD problem based on Quasi-Gas Dynamics approach with radiation processes token into account. Lots of spectral intervals are considered. Parallel MPI/OpenMP-based implementation is provided.
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  • 11
    The project aim is to create the 3D simulation of robot-arm which moves on three axis. It's based on real robot- dual arm that can solve Rubic Cube. It's gonna be implemented using openGL in Java Applet and will be awesome=)
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  • 12
    This project is a simulation model of the road traffic. The project is developed by students on FRI, University of Zilina, for educational purpose.
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  • 13

    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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  • 14

    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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  • 15

    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.
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  • 16
    4-Dimensional Cell Simulator (4DiCeS) is a framework on hybrid (stochastic and deterministic) modeling and simulation of (whole) cell environments in 4D. The framework may incorporate any reaction and diffusion algorithms applicable in a 4D grid layout.
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  • 17
    This windows program is a very basic simulator with an eclectic feature set. It simulates the 3 space dimensions, time, gravity and mass. Fixed length text file lists input points, lines, polygons. Includes 2 star catalogs. Key and mouse controls.
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  • 18
    A project to develop in C a command line based assembler/simulator for 8 bit microprocessors used in bare embedded projects. Currently, the motorola 6502 and intel 8051 are supported. Support for other microprocessors may be added.
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  • 19
    A collection of classes and functions that can be used to simulate 802.11 (a or p) physical layer operations. Makes use of the IT++ library and contains several receiver implementations as well as channel models and simulation examples.
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  • 20
    Bandwidth Apart is a simulation used to estimate bandwidth usage over communication links in the telecommunication industry. It also has the ability to ping VoIP servers and test connections for latency, packet loss, jitter etc...
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  • 21
    This project has been moved to GoogleCode: http://code.google.com/p/hdf5serie/
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  • 22
    NanoComp is a simulator of molecule cascades, intended to help design and check logic circuits using this technology.
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  • 23
    A-Life CAD is a toolkit providing a graphical interface for designing autonomous agents that can be linked against an AI game engine. Though it focuses on creating boid-like behaviours, it can also be used for physical simulation or swarm optimisation.
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  • 24
    ABPS - Advanced Branch Prediction Simulator - allows: branch prediction simulation using multiple predictors (GAg,PAg,PAp,GShare,Perceptron) and detection of unbiased branches. Results can be seen using charts. Used benchmarks: Stanford, SPEC2000, CBP2.
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  • 25
    ABSim is an Agent-Object-Relationship (AOR) simulation system based on a Java program library. The development of ABSim has terminated. Its successor is <a href="http://oxygen.informatik.tu-cottbus.de/aor/?q=node/2">AOR-JSim </a>
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