Session Details
[A-AS02]High performance computing of next generation weather, climate, and environmental sciences using K
Sun. May 22, 2016 5:15 PM - 6:30 PM JST
Sun. May 22, 2016 8:15 AM - 9:30 AM UTC
Sun. May 22, 2016 8:15 AM - 9:30 AM UTC
Poster Hall International Exhibition Hall HALL6_9
Convener:*Masaki Satoh(Atmosphere and Ocean Research Institute, The University of Tokyo), Masahide Kimoto(Atmosphere and Ocean Research Institute, The University of Tokyo), Kazuo Saito(Forecast Research Department, Meteorological Research Institute), Hiromu Seko(Meteorological Research Institute), Takemasa Miyoshi(RIKEN Advanced Institute for Computational Science), Tetsuro Tamura(Tokyo Institute of Technology), Hiroshi Niino(Dynamic Marine Meteorology Group, Department of Physical Oceanography, Atmosphere and Ocean Research Institute,The University of Tokyo), Masayuki Takigawa(Japan Agency for Marine-Earth Science and Technology), Hirofumi Tomita(AICS, RIKEN), Chihiro Kodama(Japan Agency for Marine-Earth Science and Technology)
The K computer, the fastest supercomputer in Japan, started in 2012 at RIKEN, and a lot of advanced simulation studies are being conducted in various fields including meteorology. The K computer enables us to conduct numerical simulations with an order of magnitude higher resolutions or ensemble numbers than those with previous supercomputers, and new research areas emerge in meteorology. In addition, the post-K computer will be available in 2020 as a successor of K, and feasible studies for the post-K computer have also started.
At the Recent Atmospheric Science session organized by the Meteorological Society of Japan, we comprehensively pick up this topic in the Atmospheric and Hydrospheric Sciences Session of this 2016 Union Meeting that enables to comprise the atmospheric, oceanic and land sciences. This session aims to promote recent studies related to the issues on high performance computing in weather, climate, and environmental studies using the K computer and other supercomputers, and to enhance discussions on future directions of numerical simulations in meteorology.
At the Recent Atmospheric Science session organized by the Meteorological Society of Japan, we comprehensively pick up this topic in the Atmospheric and Hydrospheric Sciences Session of this 2016 Union Meeting that enables to comprise the atmospheric, oceanic and land sciences. This session aims to promote recent studies related to the issues on high performance computing in weather, climate, and environmental studies using the K computer and other supercomputers, and to enhance discussions on future directions of numerical simulations in meteorology.
[AAS02-P01]Explicit solution of a problem modelling nonlinear Atmosphere dynamics with consideration of heat transfer, humidity and moisture content
*andrei giniatoulline1 (1.Department of Mathematics, Los Andes University, Bogota, Colombia, South America)
[AAS02-P02]Numerical simulations of Typhoon Haiyan in 2013
*Akiyoshi Wada1, Masahiro Sawada1 (1.Typhoon Research Department Meteorological Research Institute)
[AAS02-P03]High-resolution global atmospheric data assimilation experiments with an ensemble Kalman filter
*Koji Terasaki1, Shunji Kotsuki1, Takemasa Miyoshi1 (1.RIKEN Advanced Institute for Computational Science)
[AAS02-P04]Convective-scale breeding experiments in WRF simulations at a 100-m resolution
*Shigenori Otsuka1, Takemasa Miyoshi1 (1.RIKEN Advanced Institute for Computational Science)
[AAS02-P05]Simulated Tropical Cyclone Intensity and Structure using high-resolution nonhydrostatic global model
*Masahiro Sawada1, Akiyoshi Wada1, Hiromasa Yoshimura1, Masuo Nakano2, Ryo Onishi2, Shintaro Kawahara1, Hideaki Kawai1, Eiki Shindo1, Takeshi Iriguchi1, Munehiko Yamaguchi1, Masato Sugi1, Tomoe Nasuno2, Wataru Sasaki2, Hiromitsu Fuchigami3, Yoshiaki Takeuchi1 (1.Meteorological Research Institute, 2.Japan Agency for Marine-Earth Science and Technology, 3.NEC Informatec Systems, Ltd.)
[AAS02-P06]High cloud size dependency in the applicability of the fixed anvil temperature hypothesis using global non-hydrostatic simulations★Invited papers
*Akira Noda1, Tatsuya Seiki1, Masaki Satoh1, Yohei Yamada1 (1.Japan Agency for Marine-Earth Science and Technology)
[AAS02-P07]Extended-range forecast of tropical cyclogenesis in the western north Pacific using a global nonhydrostatic atmospheric model on the K computer
*Masuo Nakano1, Tomoe Nasuno1, Masaki Satoh2,1 (1.JAMSTEC, 2.U. Tokyo/AORI)
[AAS02-P08]Impact of ocean coupling on typhoon prediction in high-resolution nonhydrostatic global model
*Wataru Sasaki1, Ryo Onishi1, Hiromitsu Fuchigami2 (1.JAMSTEC Japan Agency for Marine-Earth Science and Technology, 2.NEC Informatec Systems, Ltd.)
[AAS02-P09]The statistical analysis of the explosively developing extratropical cyclone in northern Japan and Atmospheric blocking
*Yoshikazu Kitano1, Tomohito J. Yamada1 (1.Hokkaido University)
[AAS02-P10]Innovative numerical weather predictions and advanced weather disaster prevention based on damage-level estimation
*Hiromu Seko2,1, Takemasa Miyoshi3, Kazuo Saito1,2, Hiroshi Niino4, Tetsurou Tamura5, Masaru Kunii1 (1.Meteorological Research Institute, 2.Japan Agency for Marine-Earth Science and Technology, 3.RIKEN Advanced Institute for Computational Science, 4.Atmosphere and Ocean Research Institute, The University of Tokyo, 5.Tokyo Institute of Technology)
[AAS02-P11]An Ultra-high Resolution Numerical Weather Prediction with a Large Domain Using the K Computer
*TSUTAO OIZUMI1,2, Kazuo SAITO2,1, Junshi ITO2, Le DUC1,2 (1.Japan Agency for Marine-Earth Science and Technology, 2.Meteorological Research Institute)
