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TZOFFSETFROM:-0700
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DTSTART:19700308T020000
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DTSTAMP:20200129T163600Z
LOCATION:607
DTSTART;TZID=America/Denver:20191118T153000
DTEND;TZID=America/Denver:20191118T155000
UID:submissions.supercomputing.org_SC19_sess124_ws_lasalss102@linklings.co
 m
SUMMARY:Extreme Scale Phase-Field Simulation of Sintering Processes
DESCRIPTION:Workshop\n\nExtreme Scale Phase-Field Simulation of Sintering 
 Processes\n\nHierl, Hötzer, Seiz, Reiter, Nestler\n\nThe sintering process
 , which turns loose powders into dense materials, is naturally found in th
 e formation of glaciers, but is also the indispensable process to manufact
 ure ceramic materials.\nThe dynamically evolving microstructure, which is 
 established during this process, largely influences the resulting material
  properties.\nTo investigate this complex three-dimensional, scale-bridgin
 g evolution in realistic domain sizes, a highly optimized and parallelized
  multiphysics phase-field solver is developed.\nThe solver is optimized in
  a holistic way, from the application level over the time integration and 
 parallelization, down to the hardware.\nOptimizations include communicatio
 n hiding, explicit vectorization, implicit schemes and local reduction of 
 degrees of freedom.\nWith this, we are able to investigate large-scale, th
 ree-dimensional domains and long integration times.\nWe have achieved a si
 ngle-core peak performance of 32.5%, scaled up to 172032 cores on Hazel He
 n, and simulated a multi-million particle system.\n\nTag: Workshop Reg Pas
 s, Algorithms, Scalable Computing\n\nRegistration Category: Workshop Reg P
 ass, Algorithms, Scalable Computing
URL:https://sc19.supercomputing.org/presentation/?id=ws_lasalss102&sess=se
 ss124
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