We analyse the self-similar temporal turbulent BL, derive explicit forcing laws, and prove skin-friction bounds. Using Xcompact3d, we reach Reθ=2,000 (DNS) & 8,300 (ILES) in excellent agreement with spatial BLs, at modest cost.
#Turbulence #CFD #HPC #DNS #LES
We analyse the self-similar temporal turbulent BL, derive explicit forcing laws, and prove skin-friction bounds. Using Xcompact3d, we reach Reθ=2,000 (DNS) & 8,300 (ILES) in excellent agreement with spatial BLs, at modest cost.
#Turbulence #CFD #HPC #DNS #LES
Feel free to get in touch if you have any questions!
The University of Edinburgh, through EPCC, is the primary institution for 4 of these projects. See our website for details: https://buff.ly/4gNwUPA
Feel free to get in touch if you have any questions!
Follow the link for more details or feel free to get in touch with me directly.
@exageo-dla.bsky.social
Follow the link for more details or feel free to get in touch with me directly.
@exageo-dla.bsky.social
@exageo-dla.bsky.social
We have a fully-funded #PhD position as part of the ExaGEO NERC DLA.
The project is focused on accelerating #hydrodynamic models for #tidal #energy applications, with an emphasis #GPU and #exascale.
Please reach out for info or follow the link below.
For our full statement, please see our LinkedIn post here: shorturl.at/J4QFk