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4 results for “VTK”

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zenodo36/100

KPP-3 Artifact for WarpX <> ALPINE: Ascent + VTK-m

<p>This documents a run of WarpX with in situ visualization using Ascent and VTK-m. The simulation was run on Frontier (OLCF).</p> <p>ECP project ALPINE provides GPU capable C++ libraries (Conduit, Ascent, VTK-h) that can use VTK-m for rendering of multi-source, multi-camera scenes. Using Ascent and VTK-m, both a WarpX simulation and a coupled in situ visualization were run on over 500 Frontier GPUs.</p> <p>WarpX documentation: https://warpx.readthedocs.io<br> Ascent documentation: https://ascent.readthedocs.io</p>

opencc-by-4.0Aug 2023View details →
zenodo32/100

Density field data & VTK files for dislocation embedding analysis

<p>The dataset includes dislocation density field results and VTK files from the discrete dislocation dynamics (DDD) simulation of an FCC-based structure (Al).</p> <p>Various loading directions in compression ([100], [110], [111], [234]) and their misorientations (-10&deg;, -5&deg;, 0&deg;, +5&deg;, +10&deg;) were analyzed using two different initial dislocation densities in the DDD simulation.</p> <p>Post-processing was done with two different discretizations, yielding a dataset with the following description:</p> <p><strong>ddd_8res_0deg </strong>&mdash; 8x16x8 discretization data with 0&deg; misorientation.<br><strong>ddd_8res_p5deg</strong> &mdash; 8x16x8 discretization data with +5&deg; misorientation.<br><strong>ddd_8ress_m5deg </strong>&mdash; 8x16x8 discretization data with -5&deg; misorientation.<br><strong>ddd_8res_p10deg</strong> &mdash; 8x16x8 discretization data with +10&deg; misorientation.<br><strong>ddd_8res_m10deg </strong>&mdash; 8x16x8 discretization data with -10&deg; misorientation.</p> <p><strong>ddd_16res_0deg </strong>&mdash; 16x32x16 discretization data with 0&deg; misorientation.<br><strong>ddd_16res_p5deg </strong>&mdash; 16x32x16 discretization data with +5&deg; misorientation.<br><strong>ddd_16ress_m5deg</strong> &mdash; 16x32x16 discretization data with -5&deg; misorientation.<br><strong>ddd_16res_p10deg&nbsp;</strong>&mdash; 16x32x16 discretization data with +10&deg; misorientation.<br><strong>ddd_16res_m10deg </strong>&mdash; 16x32x16 discretization data with -10&deg; misorientation.</p> <p><strong>config1</strong> &mdash; \(2.5 \times 10^{13} \text{ m}^{-2}\)<br><strong>config2 </strong>&mdash; \(1 \times 10^{14} \text{ m}^{-2}\)</p> <p>This dataset complements a related publication as additional information. The link to the publication will be made available after it is published.</p>

opencc-by-4.0Jun 2024View details →
zenodo32/100

Density field data, VTK files and Jupyter notebook for dislocation embedding analysis (with periodic boundary condition)

<p><strong>pbc_dataset.zip</strong></p> <p>The density field data is only for 0 degrees of misorientation with loading directions along [100], [110], [111], [234].&nbsp;</p> <p>Folder paths for low density and low resolution simulation are:</p> <ol> <li>0deg/dir100/2.5e+13/config3/10x10x10</li> <li>0deg/dir110/2.5e+13/config3/10x10x10</li> <li>0deg/dir111/2.5e+13/config3/10x10x10</li> <li>0deg/dir234/2.5e+13/config3/10x10x10</li> </ol> <p>Folder paths for high density and high resolutions are:</p> <ol> <li>0deg/dir100/1e+14/config1/20x20x20</li> <li>0deg/dir110/1e+14/config1/20x20x20</li> <li>0deg/dir111/1e+14/config1/20x20x20</li> <li>0deg/dir234/1e+14/config1/20x20x20</li> </ol> <p>Each set of simulation has 2000 density field data files. Total files : 16000</p> <p>Please ensure that above paths are entered in the Jupyter notebook script file.</p> <p>&nbsp;</p> <p><strong>vtk.zip</strong></p> <p>VTK files for each simulation. Each simulation has 2000 files.&nbsp;</p> <p><strong>Dislocation_embeddings_pbc.ipynb</strong></p> <p>Jupyter notebook to generate dislocation embeddings for uploaded dataset.</p> <p>&nbsp;</p>

opencc-by-4.0May 2024View details →
zenodo28/100

Vtk files: Thermal ablation using CutFEM

<p>Thermal ablation using CutFEM - rectangular cavity&nbsp;- Vtk files</p>

opencc-by-4.0Apr 2018View details →

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