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DTSTAMP:20190719T085754Z
LOCATION:HG D 1.1
DTSTART;TZID=Europe/Stockholm:20190613T141500
DTEND;TZID=Europe/Stockholm:20190613T161500
UID:submissions.pasc-conference.org_PASC19_sess115@linklings.com
SUMMARY:MS28 - High-Resolution Weather and Climate Simulations: High-Perfo
 rmance Computing and Science Case
DESCRIPTION:Minisymposium\nClimate and Weather\n\nThe Challenge by the NIC
 AM-LETKF Grand Ensemble Simulations in Global Storm Resolving Scale\n\nSat
 oh, Yashiro\n\nThe Nonhydrostatic Icosahedral Atmospheric Model NICAM is p
 lanned for grand ensemble simulations with number of members of 1024 with 
 horizontal mesh size of 3.5 km, as a global storm-resolving scale mode for
  the new-coming post-K computer which will begin full operations around 20
 21 at RIKEN, Kobe, ...\n\n---------------------\nGlobal Cloud-Resolving Si
 mulations at ECMWF - Status and Prospects\n\nBauer, Dueben, Wedi, Kühnlein
 \n\nECMWF's 2016-2025 strategy aims to implement a global medium-range ens
 emble prediction system at 5 km resolution by 2025. In preparation for thi
 s ambitious goal, several very-high resolution simulations have been perfo
 rmed to establish the computational feasibility of such a system and to de
 fine the...\n\n---------------------\nImplementation of EC-Earth 10km Glob
 al Coupled ESiWACE Demonstrator and Recent Computational Improvements\n\nS
 erradell, Castrillo, Acosta\n\nIn the framework of the Centre of Excellenc
 e in Simulation of Weather and Climate in Europe (ESiWACE), a ground-break
 ing configuration for EC-Earth - a European community Earth-System Model &
 ndash; has been developed. In the atmosphere, the horizontal domain is bas
 ed on a spectral truncation of the ...\n\n---------------------\nPerforman
 ce Modeling and Scalability for the ICON Model\n\nNeumann, Adamidis, Bierc
 amp\n\nGlobal kilometre-scale resolving weather and climate models come wi
 th extreme compute requirements. Profiling, understanding and finally pred
 icting the performance and scalability of these models is hence utterly im
 portant to efficiently exploit today’s supercomputers on the one han
 d and to ac...\n
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