Artwork

Innehåll tillhandahållet av Iain Bethune and Iain Bethune (ibethune@exseed.ed.ac.uk). Allt poddinnehåll inklusive avsnitt, grafik och podcastbeskrivningar laddas upp och tillhandahålls direkt av Iain Bethune and Iain Bethune (ibethune@exseed.ed.ac.uk) eller deras podcastplattformspartner. Om du tror att någon använder ditt upphovsrättsskyddade verk utan din tillåtelse kan du följa processen som beskrivs här https://sv.player.fm/legal.
Player FM - Podcast-app
Gå offline med appen Player FM !

Fluidity: an adaptive, unstructured mesh CFD framework. Applications, software development methods and parallel performance: Dr Jon Hill, Imperial College London (48 mins, ~22 MB)

48:00
 
Dela
 

Manage episode 205984223 series 2307601
Innehåll tillhandahållet av Iain Bethune and Iain Bethune (ibethune@exseed.ed.ac.uk). Allt poddinnehåll inklusive avsnitt, grafik och podcastbeskrivningar laddas upp och tillhandahålls direkt av Iain Bethune and Iain Bethune (ibethune@exseed.ed.ac.uk) eller deras podcastplattformspartner. Om du tror att någon använder ditt upphovsrättsskyddade verk utan din tillåtelse kan du följa processen som beskrivs här https://sv.player.fm/legal.
Fluidity is a powerful Computational Fluid Dynamics framework developed at Imperial College over the last 20 years. Fluidity can be applied to a number of scientific applications, ranging from classic CFD, to oceans and multi-material problems. It uses a variety of discretisations on an unstructured mesh and includes a number of novel and innovative features, such as adaptive re-meshing, a user friendly interface, and a python interface. The main advantage Fluidity has is the adaptive re-meshing, which allows resolution to be focused where and when it is required during a simulation, depending on the simulation state at that time. This talk will briefly cover some of the features and science behind Fluidity before covering details of AMCG’s software development methodologies and the parallel scaling behaviour of Fluidity on HECToR. Finally, future developments will be covered.
Links:
  continue reading

19 episoder

Artwork
iconDela
 
Manage episode 205984223 series 2307601
Innehåll tillhandahållet av Iain Bethune and Iain Bethune (ibethune@exseed.ed.ac.uk). Allt poddinnehåll inklusive avsnitt, grafik och podcastbeskrivningar laddas upp och tillhandahålls direkt av Iain Bethune and Iain Bethune (ibethune@exseed.ed.ac.uk) eller deras podcastplattformspartner. Om du tror att någon använder ditt upphovsrättsskyddade verk utan din tillåtelse kan du följa processen som beskrivs här https://sv.player.fm/legal.
Fluidity is a powerful Computational Fluid Dynamics framework developed at Imperial College over the last 20 years. Fluidity can be applied to a number of scientific applications, ranging from classic CFD, to oceans and multi-material problems. It uses a variety of discretisations on an unstructured mesh and includes a number of novel and innovative features, such as adaptive re-meshing, a user friendly interface, and a python interface. The main advantage Fluidity has is the adaptive re-meshing, which allows resolution to be focused where and when it is required during a simulation, depending on the simulation state at that time. This talk will briefly cover some of the features and science behind Fluidity before covering details of AMCG’s software development methodologies and the parallel scaling behaviour of Fluidity on HECToR. Finally, future developments will be covered.
Links:
  continue reading

19 episoder

Alla avsnitt

×
 
Loading …

Välkommen till Player FM

Player FM scannar webben för högkvalitativa podcasts för dig att njuta av nu direkt. Den är den bästa podcast-appen och den fungerar med Android, Iphone och webben. Bli medlem för att synka prenumerationer mellan enheter.

 

Snabbguide

Lyssna på det här programmet medan du utforskar
Spela