Research theme for competitive and other funds (7):
2022 - 2026 Numerical experiments of mantle convection of massive terrestrial planets: roles of interactions between adiabatic compression and changes in physical properties
2018 - 2022 Numerical experiments of mantle convection of extrasolar terrestrial planets
2014 - 2017 Numerical experiments of mantle convection in a Big Mantle Wedge associated with subducting plates
2010 - 2013 Development of Three-dimensional Simulation Programs of Mantle Convection with Multiple Phases and/or Components
2004 - 2010 Modeling of stagnation/falling processes by downward flow
2007 - 2009 Development of world-class program for three-dimensional numerical simulation of mantle convection
2001 - 2003 Physical Mechanism of Generation and Reversals of Geomagnetic Dynamo
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Papers (50):
Ken'yo U, Masanori Kameyama, Masaki Ogawa. The Volcanic and Radial Expansion/Contraction History of the Moon Simulated by Numerical Models of Magmatism in the Convective Mantle. Journal of Geophysical Research: Planets. 2023. 128. 9
中久喜伴益, 亀山真典. Circulation and Dynamical Roles of Water in the Mantle Convection System. 高圧力の科学と技術. 2023. 33. 3
Masanori Kameyama. Numerical experiments on thermal convection of highly compressible fluids with variable viscosity and thermal conductivity in 2-D cylindrical geometry: implications for mantle convection of super-Earths. Geophysical Journal International. 2022. 231. 2. 1457-1469
Masanori Kameyama. Linear analysis on the onset of thermal convection of highly compressible fluids with variable viscosity and thermal conductivity in spherical geometry: implications for the mantle convection of super-Earths. Earth, Planets and Space. 2021. 73. 1
Takehiro Miyagoshi, Masanori Kameyama, Masaki Ogawa. Tectonic plates in 3D mantle convection model with stress-history-dependent rheology. Earth, Planets and Space. 2020
Development of Advanced Simulation Methods for Solid Earth Simulations. Annual report of the earth simulator. 2016. 227-231
Hayashi Y, Umeda T, Umemura M, Ogawa M, Kameyama M. Symposium on Computational Planetary Science. Planetary People. 2014. 23. 1. 64-69
KAMEYAMA Masanori. Mantle Convection : "Flows" in the "Solid" Earth's Interior. Journal of the Japan Society of Mechanical Engineers. 2013. 116. 1136. 478-480
KAMEYAMA Masanori. Mantle Convection : Flow of "Solid" Rocks in the Earth's Interior(<Special Review>Fluid Flow Phenomena in Earth Science Part 1: The Interior of the Earth). Journal of Japan Society of Fluid Mechanics. 2011. 30. 4. 305-310
1995 - 1998 The University of Tokyo Graduate School of Science
1993 - 1995 The University of Tokyo Graduate School of Science
1989 - 1993 The University of Tokyo Faculty of Science
Professional career (1):
Doctor of Science (University of Tokyo)
Work history (3):
2016/04 - 現在 Ehime University Geodynamics Research Center Professor
2007/09 - 2016/03 Ehime University Geodynamics Research Center Associate Professor
2003/04 - 2007/08 Japan Agency for Marine-Earth Science and Technologu Earth Simulator Center Research Scientist
Awards (2):
2010/07 - Flash of the year
2004/11 - Gordon Bell Award (Peak Performance)
Association Membership(s) (5):
The Visualization Society of Japan
, American Geophysical Union
, The Japanese Society for Planetary Sciences
, Seismological Society of Japan
, Japan Geoscience Union