杉浦 圭祐のホームページ

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発表論文等一覧
◯投稿論文(査読付き)
[1]"An Extension of Godunov SPH: Application to Negative Pressure Media"
Keisuke Sugiura, Shu-ichiro Inutsuka (2016)
Journal of Computational Physics, 308, 171-197 (arXiv:1505.05230)
[2]"An Extension of Godunov SPH II: Application to Elastic Dynamics"
Keisuke Sugiura, Shu-ichiro Inutsuka (2017)
Journal of Computational Physics, 333, 78-103 (arXiv:1605.07706)
[3]"Toward Understanding the Origin of Asteroid Geometries. Variety in Shapes Produced by Equal-Mass Impacts"
Keisuke Sugiura, Hiroshi Kobayashi, Shu-ichiro Inutsuka (2018)
Astronomy and Astrophysics, 620, A167 (arXiv:1804.11039)
[4]"Collisional Elongation: Possible Origin of Extremely Elongated Shape of 1I/`Oumuamua"
Keisuke Sugiura, Hiroshi Kobayashi, Shu-ichiro Inutsuka (2019)
Icarus, 328, 14-22 (arXiv:1903.06373)
[5]"High-resolution simulations of catastrophic disruptions: Resultant shape distributions"
Keisuke Sugiura, Hiroshi Kobayashi, Shu-ichiro Inutsuka (2020)
Planetary and Space Science, 181, 104807 (arXiv:1911.08634)
[6]"SPH simulations for shape deformation of rubble-pile asteroids through spinup: The challenge for making top-shaped asteroids Ryugu and Bennu"
Keisuke Sugiura, Hiroshi Kobayashi, Sei-ichiro Watanabe, Hidenori Genda, Ryuki Hyodo, Shu-ichiro Inutsuka (2021)
Icarus, 365, 114505 (arXiv:2104.13516)
[7]"Giant impact onto a Vesta-like asteroid and formation of mesosiderites through mixing of metallic core and surface crust"
Keisuke Sugiura, Makiko K. Haba, Hidenori Genda (2022)
Icarus, 379, 114949 (arXiv:2202.06486)

◯日本語投稿論文(査読付き)
[1]「微惑星衝突による1I/`Oumuamuaの極端細長形状の形成可能性」
杉浦圭祐, 小林浩, 犬塚修一郎 (2020)
遊星人28巻4号 (link)
[2]「固体天体衝突現象を扱う数値計算法の開発と衝突による小惑星形状形成過程の解析」
杉浦圭祐 (2020)
天文月報 2020年3月号 EUREKA (link)

◯出版物
[1]"Development of a Numerical Simulation Method for Rocky Body Impacts and Theoretical Analysis of Asteroidal Shapes"
Keisuke Sugiura (2020)
Part of the Springer Theses book Series (link)

◯学位論文
卒業論文
「SPH法による流体力学の数値計算」
修士論文
「微惑星の高速衝突破壊現象の解明へ向けて:ゴドノフSPH法の弾性体力学への拡張と応用」
博士論文
"Development of the Numerical Simulation Method for Rocky Body Impacts and Theoretical Analysis of Asteroidal Shapes"