Zobrazeno 1 - 10
of 14
pro vyhledávání: '"HIROMITSU FUCHIGAMI"'
Publikováno v:
Flow, Turbulence and Combustion. 97:1111-1125
This paper reports on the development of a numerical weather simulation model combined with a detailed spectral-bin cloud microphysics model that can explicitly consider the droplet motion and droplet-atmosphere interactions of sea spray. Sea spray i
Autor:
Ryo Onishi, Shiro Nishikawa, Koji Goto, Wataru Sasaki, Yoichi Ishikawa, Keiko Takahashi, Hiromitsu Fuchigami
Publikováno v:
Geophysical Research Letters. 43:9352-9360
An observed Madden–Julian Oscillation (MJO) propagating from the central Indian Ocean to the western Pacific from 15 December 2006 to 10 January 2007 was successfully simulated by a cloud-system-resolving global ocean–atmosphere coupled model wit
Publikováno v:
Monthly Weather Review. 133:504-520
A conservative semi-Lagrangian scheme with rational function for interpolation is implemented in spherical geometry and tested in an atmospheric general circulation model (AGCM). The new scheme, different from the conventional semi-Lagrangian method,
Publikováno v:
Scopus-Elsevier
Autor:
Koji Goto, Satoru Okura, Yoshinori Tsuda, Ken'ichi Itakura, Kenryo Kataumi, Yoko Isobe, Yuki Tochihara, Jun-ichi Yamamoto, Kunihiko Watanabe, Yoshiyuki Kubo, Hiromitsu Fuchigami, Hiroshi Takahara, Toshifumi Takei, Akira Azami, Keiko Takahashi
Publikováno v:
SC State of the Practice Reports
Mechanisms of interactions among different scale phenomena play important roles for forecasting of weather and climate. Multi-scale Simulator for the Geoenvironment (MSSG), which deals with multi-scale multi-physics phenomena, is a coupled non-hydros
Autor:
Takeshi Sugimura, Yuya Baba, Keiko Takahashi, Shinichiro Kida, Hiromitsu Fuchigami, Ryo Onishi, Koji Goto
Publikováno v:
Lecture Notes in Computer Science ISBN: 9783642231773
PaCT
PaCT
Multi-Scale Simulator for the Geoenvironment (MSSG), which is a coupled non-hydrostatic atmosphere-ocean-land model, has been developed in the Earth simulator Center. Outline of MSSG is introduced and its characteristics are presented. In MSSG, Yin-Y
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::b996c05b40f31a6bd9faab7a549379bf
https://doi.org/10.1007/978-3-642-23178-0_44
https://doi.org/10.1007/978-3-642-23178-0_44
Publikováno v:
High Performance Computing on Vector Systems 2009 ISBN: 9783642039126
Multi-Scale Simulator for the Geoenvironment (MSSG), which is a coupled non-hydrostatic atmosphere-ocean-land model, has been developed in the Earth simulator Center. Outline of MSSG is introduced and characteristics are presented. After optimizing c
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::f322de20f28f857907c02301c05aa15f
https://doi.org/10.1007/978-3-642-03913-3_16
https://doi.org/10.1007/978-3-642-03913-3_16
Autor:
Takeshi Sugimura, Mitsuru Ohdaira, Ryo Onishi, Xindong Peng, Keiko Takahashi, Hiromitsu Fuchigami, Koji Goto
Publikováno v:
High Resolution Numerical Modelling of the Atmosphere and Ocean ISBN: 9780387366715
This chapter presents basic formulation of Multi-Scale Simulator for the Geoenvironment (MSSG) which is a coupled non-hydrostatic AGCM-OGCM developed in Earth Simulator Center. MSSG is characterized by Yin-Yang grid system for both of the components,
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::9a18d40133190969c955e14f396a0ad1
https://doi.org/10.1007/978-0-387-49791-4_15
https://doi.org/10.1007/978-0-387-49791-4_15
Autor:
Keiko Takahashi, Ryo Onishi, Hiromitsu Fuchigami, Koji Goto, Takeshi Sugimura, Mitsuru Ohdaira, Xindong Peng
Publikováno v:
Use of High Performance Computing in Meteorology.
MultiScale Simulator for the Geoenvironment (MSSG), which is a coupled non-hydrostatic atmosphere-ocean-land model, has been developed in the Earth simulator Center. Out line of MSSG is introduced and characteristics are presented. Computational perf
Publikováno v:
Realizing Teracomputing.
A spectral atmospheric general circulation model called AFES for climate studies was developed and optimized for the Earth Simulator. The model is a global three-dimensional hydrostatic model using the spectral transform method. We achieved an extrem