[0] SPH simulations of a 2D dam-break flow against a vertical wall. General information on the collection
DOI: 10.4121/14309240
Datacite citation style
Dataset
This dataset is the entry point to the simulations contained in the collection "High-resolution SPH simulations of the 2D dam-break benchmark solution by Meringolo et al., 2019" with referrer https://doi.org/10.4121/c.5353691
Perusing this dataset first is strongly recommended. It provides the context information on the collection, how the data have been generated, how they can be reproduced/ accessed/used, how they are named and organized in this collection. It also provides a redistribution of the DualSPHysics software suite used to generate the data.
The file Commentary.pdf in this dataset provides information on the generalities of the collection (physics, modelling, solver), on the test case (the dam-break flow impinging on a vertical wall), on the simulation datasets (aim, possible usages, creation and content, access, decompression, etc.), and on the research context. Reading that file first is strongly recommended.
The companion datasets, then, contain the output results for values of the resolution parameter H/dx=800, 1600, 3200, 6400, leading to simulations with 1M, 5M, 20M, 82M fluid particles, as specified in the names of the datasets. This one dataset also includes the images of the flow fields for each file in those output datasets; users can preview here their content and evaluate which files to download and inspect, avoiding bulk downloads.
This collection is a nominated finalist of the 2024 Dutch Data Prize. The certificate of nomination and the 3-slide presentation for the pitch at the award ceremony of Research Data Netherlands (17/10/2024) are also part of this dataset.
When using this dataset, please cite the overarching collection instead: Lipari, Giordano; Vuik, Cornelis (2021): High-resolution SPH simulations of a 2D dam-break flow against a vertical wall. 4TU.ResearchData. Collection. https://doi.org/10.4121/c.5353691
History
- 2021-04-23 first online
- 2024-10-21 published, posted
Publisher
4TU.ResearchDataFormat
Compressed archive DualSPHysics suite: zip (binary) • Patch files: patch (text) • Simulation input file: xml (text) • Compressed archive of images: 7z (binary) • Images: png (binary)References
Funding
- "GPU acceleration and numerical optimization for SPH" • funding: Shell India Markets Private Limited, Delft Institute of Applied Mathematics
Organizations
Numerical Analysis Group, Delft Institute of Applied Mathematics, Delft University of TechnologyDATA
Files (20)
- 3,473 bytesMD5:
ba248dcd4d96c99600e97eac918e2b53README.txt - 732,171 bytesMD5:
27aa1839ebba46c87bc7ed7a83b6d542241017-DDP-nomination-certificate.pdf - 876,701 bytesMD5:
298cee4b792863cbf094b491223391b0241017-DDP-pitch.pdf - 679,510 bytesMD5:
1851cb5fbb2364f7287abb62f7180d6aCommentary.pdf - 306,291,577 bytesMD5:
5a55bd449a2b39d6ad859c8c0009f85eec025723b947f9d3af96ead3025393681b4fd1ed.zip - 5,035 bytesMD5:
7f6f91ca9597f921c996fea0d3a913bdMeringolo.patch - 6,403 bytesMD5:
3ee85ef7af046145bf2baff4b888d680meringolo.sh - 19,753 bytesMD5:
24d4ba5ad6bffd8a085339358d9e6c85Meringolo_Def.xml - 33,132,236 bytesMD5:
3d2dcd5eca040d075ed1cb2ffac598f7Preview-0800-den.7z - 44,308,367 bytesMD5:
519ab127fbb87b1f5d6a62e4caf940f5Preview-0800-pid.7z - 26,847,357 bytesMD5:
bf4e30ba91f5fb14be72b379d69b3389Preview-0800-vel.7z - 17,049,574 bytesMD5:
a49b85bee29ed00618188a3f81154070Preview-1600-den.7z - 45,063,762 bytesMD5:
4123ab43b8cf45d869660b6bf551e593Preview-1600-pid.7z - 27,708,599 bytesMD5:
6caf312923992b8de169a8d56caf3386Preview-1600-vel.7z - 19,269,246 bytesMD5:
87cf73f0c501fa5b639e0044067bd2b6Preview-3200-den.7z - 46,536,387 bytesMD5:
389649b71931df5892921a1ad4a1e5c2Preview-3200-pid.7z - 28,885,125 bytesMD5:
3957d6f2370049db57808382e33ea934Preview-3200-vel.7z - 25,235,937 bytesMD5:
0a30b919887925656a33e90e44aed06fPreview-6400-den.7z - 53,143,326 bytesMD5:
36fa8e4dc4a0365009e8aa3eb1311145Preview-6400-pid.7z - 35,875,718 bytesMD5:
251f0f0658a0b480edbd0c3d8a7c7de6Preview-6400-vel.7z -
download all files (zip)
711,670,257 bytes unzipped





