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Opening
the Earth Simulator Project
Tetsuya Sato Director-General of the Earth Simulator Center
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Outline
of the Earth Simulator Project
| 1. |
Mission and Basic Principles of the Earth Simulator |
| 2. |
Managing System for the Earth Simulator Project |
| 3. |
Earth Simulator Research Project |
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3.1. Research Fields of the Research Projects |
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3.2. Resource Allocation |
| 4. |
Selected Projects in FY2002 |
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4.1. Atmospheric and Oceanic Simulation (17 projects) |
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4.2. Solid Earth Simulation (8 projects) |
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4.3. Computer Science (4 projects) |
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4.4. Epoch-making Simulation (11 projects) |
| 5. |
System Configuration of the Earth Simulator |
| 6. |
History and Event Calendar |
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Earth Simulator
Research Projects
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Chapter1 Atmospheric
and Oceanic Simulation  |
| 1 |
Development
of a Nonhydrostatic Icosahedral High-resolution Atmospheric General Circulation
Model
Masaki Sato Frontier
Research System for Global Change
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| 2 |
Atmospheric
Composition Change and Its Climate Impact Studied by Global and Regional
Chemical Transport Models
Hajime Akimoto Frontier Research System for Global Change
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| 3 |
Investigation
of Asian Summer Monsoon System using a Cloud Resolving Regional Climate
Model
Takao Yoshikane Frontier Research System for Global Change
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| 4 |
Advanced Prediction
System and Counter Measures of Regional- and Meso-scale Water Cycle
Hiromasa Ueda Kyoto
University
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| 5 |
Eddy-resolving
Simulation of World Ocean Circulation using the PFES -Toward the Sophisticated
J-COPE Project-
Takashi Kagimoto Frontier
Research System for Global Change
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| 6 |
Development
of Super High Resolution Global and Regional Climate Models
Takayo Matsuo Meteorological Research Institute
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| 7 |
Future Climate Change Projection using a High-Resolution Coupled
Ocean-Atmosphere Climate Model
Akimasa Sumi Center for Climate System Research, University of Tokyo
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| 8 |
Development
of Highly Parallel Ocean General Circulation Model using Cubic Grid System
Yukio Tanaka Frontier
Research System for Global Change
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| 9 |
Development
of an Integrated Earth System Model for Prediction of Global Environmental
Changes
Taro Matsuno Frontier Research System for Global Change
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| 10 |
Eddy-resolving
Simulation of the World Ocean Circulation by using MOM3-based OGCM Code
(OFES) Optimized for the Earth Simulator
Hideharu Sasaki Earth Simulator Center
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| 11 |
Development
of High-resolution Atmosphere Ocean Coupled Model and Global Warming Prediction
Koki Maruyama Central
Research Institute of Electric Power Industry
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| 12 |
Super-High-Resolution
Climate Simulations with an Atmospheric General Circulation Model
Wataru Ohfuchi Earth Simulator Center
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| 13 |
Research Development
of 4-Dimensional Data Assimilation System using a Coupled Climate Model
and Construction of Reanalysis Datasets for Initialization
Toshiyuki Awaji Frontier
Research System for Global Change
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| 14 |
Development
of Coupled Ocean-Atmosphere-Sea ice Model with Optimized Computational Performance
on the Earth Simulator
Keiko Takahashi Earth Simulator Center
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| 15 |
Parameterization
of Turbulent Diffusivity in the Deep Ocean
Toshiyuki Hibiya Graduate
School of Science, University of Tokyo
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| 16 |
Coupled Physical-Ecosystem
Model in the Bering-Chukchi Seas
Jia Wang IARC-FRSGC,
YES and University of Alaska Fairbanks |
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| 17 |
Process Studies
and Seasonal Prediction Experiment using Coupled General Circulation Model
Toshio Yamagata Frontier
Research System for Global Change
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Chapter2 Solid Earth Simulation 
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| 1 |
Simulation
Study on the Generation and Distortion Process of the Geomagnetic Field
in Earth-like Conditions
Yozo Hamano Institute
for Frontier Research on Earth Evolution
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| 2 |
Development
of Solid Earth Simulation Platform
Hiroshi Okuda Department
of Quantum Engineering and Systems Science, University of Tokyo
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| 3 |
Predictive
Simulation for Crustal Activity in and around Japan
Mitsuhiro Matsu'ura Department
of Earth and Planetary Science, University of Tokyo
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| 4 |
Numerical
Simulation of Seismic Wave Propagation and Strong Motions in 3D Heterogeneous
Structure
Takashi Furumura Earthquake
Research Institute, University of Tokyo
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| 5 |
Global Elastic
Response Simulation
Seiji Tsuboi Institute
for Frontier Research on Earth Evolution
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| 6 |
Dynamic Process for the Earth's Mantle
Yoshio Fukao Institute for
Frontier Research on Earth Evolution
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| 7 |
Numerical
Simulation of Mantle Convection and Material Properties of the Earth's Interior
Tomoeki Nakakuki Dept.
of Earth and Planetary Systems Science, Hiroshima University
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| 8 |
Simulation
of Earthquake Generation Process in a Complex System of Faults
Kazuro Hirahara Graduate
School of Environmental Studies, Nagoya University
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Chapter3 Computer Science 
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| 1 |
Numerical
Simulation of Rocket Engine Internal Flows
Hiroshi Miyajima National
Space Development Agency of Japan
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| 2 |
Development of a Visualization Scheme for Large-scale Data on the
Earth Simulator
Yoshio Suzuki Center
for Promotion of Computational Science and Engineering, Japan Atomic Energy
Research Institute
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| 3 |
Performance
Evaluation of Large-scale Parallel Simulation Codes and Designing New Language
Features on the HPF (High Performance Fortran) Data-Parallel Programming
Environment
Yasuo Okabe Academic
Center for Computing and Media Studies, Kyoto University
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| 4 |
Designing and Implementation of Parallel Numerical Computing Library
for Multi-node Environment of the Earth Simulator
Ken'ichi Itakura Earth Simulator Center
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Chapter4 Epoch-Making Simulation 
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| 1 |
Large-Scale
Numerical Simulations on Thermal-Hydraulics of Multi-Phase Flows in Nuclear
Reactors with a Direct Analysis Method
Kazuyuki Takase Japan
Atomic Energy Research Institute
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| 2 |
Large-scale
Simulation on the Properties of Carbon-Nanotube
Kazuo Minami Research
Organization for Information Science & Technology
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| 3 |
Studies on Protein
Dynamical Structures and Electronic States by Large-Scale Computations
Fumitoshi Sato Institute
of Industrial Science, University of Tokyo
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| 4 |
Large-scale
Parallel Fluid Simulations for Spallation Type Mercury Target Adopted in
the Project of High-intensity Proton Accelerator
Chuichi Arakawa Center for Promotion of Computational Science and Engineering,
Japan Atomic Energy Research Institute
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| 5 |
Development of the Next-generation Computational Solid Mechanics
Simulator for a Virtual Demonstration Test
Ryuji Shioya Kyushu University
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| 6 |
Study of the
Standard Model of Elementary Particles on the Lattice with the Earth Simulator
Akira Ukawa Center for Computational Physics, University of Tsukuba
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| 7 |
Large-scale Simulation for a Tera Hz Resonance Superconductors Device
Masashi Tachiki National Institute for Materials Science
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| 8 |
Geospace Environment
Simulator
Yoshiharu Omura Kyoto
University
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| 9 |
Direct Numerical
Simulations of Fundamental Turbulent Flows with the Largest Grid Numbers
in the World and its Application of Modeling for Engineering Turbulent
Flows
Chuichi Arakawa Center for Promotion of Computational Science and Engineering,
Japan Atomic Energy Research Institute
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| 10 |
First Principles
Molecular Dynamics Simulations of Solution
Masaru Hirata Japan Atomic Energy Research Institute
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| 11 |
Research on
Structure Formation of Plasmas Dominated by Multiple Hierarchical Dynamics
Yasuaki Kishimoto Japan
Atomic Energy Research Institute
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