541 to 550 of 46,777 Results
Oct 21, 2021 -
Data for: Relying on Dynamically Morphing Blades to Increase the Efficiency of a Cycloidal Rotor
Bzip Archive - 1.8 GB -
MD5: 4c240a14ba82a65f72b9d6bb88583983
OpenFOAM simulation results: asymmetric trailing edge camber with 8% camber at top and 16% camber at bottom, p=0.7 |
Oct 21, 2021 -
Data for: Relying on Dynamically Morphing Blades to Increase the Efficiency of a Cycloidal Rotor
Bzip Archive - 1.6 GB -
MD5: 6121d712246a8ba19ec92887b26969a0
OpenFOAM simulation results: symmetric trailing edge camber of 10% at position p = 0.7 |
Oct 21, 2021 -
Data for: Relying on Dynamically Morphing Blades to Increase the Efficiency of a Cycloidal Rotor
Bzip Archive - 1.8 GB -
MD5: 9a23014af6ade23790c6afa79d01c1d7
OpenFOAM simulation results: symmetric trailing edge camber of 12% at position p = 0.7 |
Oct 21, 2021 -
Data for: Relying on Dynamically Morphing Blades to Increase the Efficiency of a Cycloidal Rotor
Bzip Archive - 1.6 GB -
MD5: 3b8b2a995526d958898c60777ac96a2f
OpenFOAM simulation results: symmetric trailing edge camber of 14% at position p = 0.7 |
Oct 21, 2021 -
Data for: Relying on Dynamically Morphing Blades to Increase the Efficiency of a Cycloidal Rotor
Bzip Archive - 1.5 GB -
MD5: 7db860aaf21ae51a0d8daf365ab3bc22
OpenFOAM simulation results: asymmetric trailing edge camber with 16% camber at top and 8% camber at bottom, p=0.7 |
Oct 21, 2021 -
Data for: Relying on Dynamically Morphing Blades to Increase the Efficiency of a Cycloidal Rotor
Bzip Archive - 1.8 GB -
MD5: ac995e0e37b1a8f5b3a23f1ddc0b94b7
OpenFOAM simulation results: symmetric trailing edge camber of 16% at position p = 0.7 |
Oct 21, 2021 -
Data for: Relying on Dynamically Morphing Blades to Increase the Efficiency of a Cycloidal Rotor
Bzip Archive - 1.6 GB -
MD5: a19345b3975eea750a757f2cced5c0b3
OpenFOAM simulation results: symmetric trailing edge camber of 10% at position p = 0.8 |
Oct 18, 2021 - Scientific Computing
Pollinger, Theresa, 2021, "Replication Data for: Distributing Higher-Dimensional Simulations Across Compute Systems: A Widely Distributed Combination Technique", https://doi.org/10.18419/DARUS-2123, DaRUS, V1, UNF:6:azg9VIhJn6FUwnNgme2Kjg== [fileUNF]
Scripts to run the weak, strong and remote strong scaling tests described in "Distributing Higher-Dimensional Simulations Across Compute Systems: A Widely Distributed Combination Technique", as well as measurements obtained on the Machines HAWK and our Institute's epyc machine. To reproduce, follow the build procedure detailed in the scripts reposi... |
Oct 18, 2021 -
Replication Data for: Distributing Higher-Dimensional Simulations Across Compute Systems: A Widely Distributed Combination Technique
JSON - 262.8 KB -
MD5: 33a87f929d01092f82b3945473a8920f
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Oct 18, 2021 -
Replication Data for: Distributing Higher-Dimensional Simulations Across Compute Systems: A Widely Distributed Combination Technique
JSON - 30.1 MB -
MD5: 33c6bc1fe3a161bcc89880b68f437cde
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