[HTML][HTML] Generative design of large-scale fluid flow structures via steady-state diffusion-based dehomogenization

SN Hankins, Y Zhou, DJ Lohan, EM Dede - Scientific Reports, 2023 - nature.com
A computationally efficient dehomogenization technique was developed based on a
bioinspired diffusion-based pattern generation algorithm to convert an orientation field into …

[HTML][HTML] Generative design of large-scale fluid flow structures via steady-state diffusion-based dehomogenization

SN Hankins, Y Zhou, DJ Lohan, EM Dede - Scientific Reports, 2023 - ncbi.nlm.nih.gov
A computationally efficient dehomogenization technique was developed based on a
bioinspired diffusion-based pattern generation algorithm to convert an orientation field into …

Generative design of large-scale fluid flow structures via steady-state diffusion-based dehomogenization

SN Hankins, Y Zhou, DJ Lohan… - Scientific Reports, 2023 - ui.adsabs.harvard.edu
A computationally efficient dehomogenization technique was developed based on a
bioinspired diffusion-based pattern generation algorithm to convert an orientation field into …

Generative design of large-scale fluid flow structures via steady-state diffusion-based dehomogenization

SN Hankins, Y Zhou, DJ Lohan… - Scientific reports, 2023 - pubmed.ncbi.nlm.nih.gov
A computationally efficient dehomogenization technique was developed based on a
bioinspired diffusion-based pattern generation algorithm to convert an orientation field into …

Generative design of large-scale fluid flow structures via steady-state diffusion-based dehomogenization

S Hankins, Y Zhou, D Lohan, E Dede - Scientific Reports, 2023 - europepmc.org
A computationally efficient dehomogenization technique was developed based on a
bioinspired diffusion-based pattern generation algorithm to convert an orientation field into …

Generative design of large-scale fluid flow structures via steady-state diffusion-based dehomogenization.

SN Hankins, Y Zhou, DJ Lohan… - Scientific Reports, 2023 - search.ebscohost.com
A computationally efficient dehomogenization technique was developed based on a
bioinspired diffusion-based pattern generation algorithm to convert an orientation field into …

Generative design of large-scale fluid flow structures via steady-state diffusion-based dehomogenization.

SN Hankins, Y Zhou, DJ Lohan, EM Dede - Scientific Reports, 2023 - europepmc.org
A computationally efficient dehomogenization technique was developed based on a
bioinspired diffusion-based pattern generation algorithm to convert an orientation field into …