セッション詳細

[P-PS02]Regolith Science

2019年5月29日(水) 13:45 〜 15:15
A01 東京ベイ幕張ホール
コンビーナ:和田 浩二(千葉工業大学惑星探査研究センター)、中村 昭子(神戸大学大学院理学研究科地球惑星科学専攻)、Patrick Michel(Observatoire De La Cote D'Azur)、Kevin John Walsh(Southwest Research Institute Boulder)、座長:和田 浩二(千葉工業大学惑星探査研究センター)
Recent planetary explorations have revealed that almost all solid bodies in the solar system are covered with small particles, called regolith. The surface geology, especially regolith behavior on the surfaces of solid bodies, becomes increasingly more important as represented by Hayabusa mission and other on-going and planned sample-return missions such as Hayabusa2, OSIRIS-REx, and MMX.<br/><br/>For fully understanding the regolith science, it is required to know and compare the regolith conditions on various celestial bodies, from asteroids to planets, with various methods.<br/><br/>Therefore, this session welcomes broad topics related to regolith on various celestial bodies, such as asteroids, comets, the Moon, the martian moons, Mars, etc. Papers on the formation, evolution, and alteration processes of regolith particles and regolith systems on the surface of planetary bodies, remote and in-situ observational results and techniques, analyses and results of returned samples, and laboratory, numerical, and theoretical studies on the fundamental physical and chemical processes are all welcome. <br/><br/>Note that what we call regolith is not just fine grains: all kinds of materials (more or less loose) that lie on the surface, from cobbles to finer grains, are our targets.

[PPS02-01]Moganite in a lunar meteorite as a trace of H2O ice in the lunar regolith★Invited Papers

*鹿山 雅裕1 (1.東北大学)

[PPS02-02]Simulating the Lunar Soil: a Japanese Lunar Soil Simulant FJS-1 and Its Properties★Invited Papers

*鵜山 尚大1、金森 洋史1、青木 滋1 (1.清水建設株式会社)

[PPS02-03]Experimental estimation of regolith scattering behavior when a space lander touches on a planetary body★Invited Papers

*馬場 満久1、Ronald Ballouz2、大槻 真嗣1 (1.国立研究開発法人宇宙航空研究開発機構、2.アリゾナ大学)

[PPS02-04]Ray systems in granular cratering

*Tapan Sabuwala1、Christian Butcher1、Gustavo Gioia1、Pinaki Chakraborty1 (1.Okinawa Institute of Science and Technology Graduate University)

[PPS02-05]Scaling of oblique impact cratering onto inclined granular layer

滝澤 真太1、*桂木 洋光1 (1.名古屋大学大学院環境学研究科)

[PPS02-06]Experimental study on gravitational effects on crater size formed by low-velocity impacts into granular media

*木内 真人1、中村 昭子2、和田 浩二3 (1.国立研究開発法人宇宙航空研究開発機構宇宙科学研究所、2.神戸大学大学院理学研究科、3.千葉工業大学惑星探査センター)