日本地球惑星科学連合2022年大会

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[E] 口頭発表

セッション記号 P (宇宙惑星科学) » P-PS 惑星科学

[P-PS02] Regolith Science

2022年5月25日(水) 10:45 〜 12:15 展示場特設会場 (1) (幕張メッセ国際展示場)

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)、コンビーナ:中村 昭子(神戸大学大学院理学研究科)、Walsh Kevin J(Southwest Research Institute Boulder)、コンビーナ:Michel Patrick(Universite Cote D Azur Observatoire De La Cote D Azur CNRS Laboratoire Lagrange)、座長:長足 友哉(神戸大学)、和田 浩二(千葉工業大学惑星探査研究センター)


11:15 〜 11:30

[PPS02-03] Loose packing of Bennu's near-subsurface

*Kevin J Walsh1、Ronald-Louis Ballouz2,3、Erica R Jawin4、Chrysa Avdellidou5、Olivier S Barnouin3、Carina A Bennett2、Edward B Bierhaus6、Brent J Bos7、Saverio Cambioni8、Harold C Connolly Jr.9、Marco Delbo5、Daniella N DellaGiustina2、Joseph DeMartini10、Joshua P Emery11、Dathon R Golish2、Patrick C Haas6、Carl W Hergenrother2、Huikang Ma6、Patrick Michel5、Michael C Nolan2、Ryan Olds6、Benjamin Rozitis12、Derek C Richardson10、Bashar Rizk2、Andrew J Ryan2、Paul Sanchez13、Daniel J Scheeres13,14、Stephen R Schwartz2、Sanford H Selznick15、Yun Zhang5、Dante S Lauretta2 (1.Southwest Research Institute, Boulder、2.Lunar and Planetary Laboratory, University of Arizona、3.Johns Hopkins University Applied Physics Laboratory、4.National Air and Space Museum, Smithsonian Institution、5.Université Côte d’Azur, Observatoire de la Côte d’Azur、6.Lockheed Martin Space、7.NASA Goddard Spaceflight Center、8.Department of Earth, Atmospheric and Planetary Sciences, Massachusetts Institute of Technology、9.Department of Geology, Rowan University、10.Department of Astronomy, University of Maryland、11.Department of Astronomy and Planetary Science, Northern Arizona University、12.School of Physical Sciences, The Open University、13.Colorado Center for Astrodynamics Research, University of Colorado Boulder、14.Smead Aerospace Engineering Sciences Department, University of Colorado Boulder、15.Ascending Node Technologies)

キーワード:Asteroid, Regolith, Bennu

The OSIRIS-REx spacecraft interaction with Bennu provided a valuable
test of its near-subsurface properties. The spacecraft was equipped
with a Touch-and-Go Sample Acquisition Mechanism (TAGSAM), which is an
annular container attached to an extendable arm. On 20 October 2020
the sampling operation successfully pressed TAGSAM into the surface of
the asteroid at 10 cm/s, released high pressure gas and after a few
seconds of contact initiated a backaway manuever to leave Bennu.

The interaction with the surface prior to gas release was bracketed
with two images of the surface with ~mm/pixel resolution and the
forces imparted on the spacecraft were recorded with a Inertial
Measurement Unit. We combine this data to estimate the penetration
profile of TAGSAM into the near-subsurface of Bennu, characterizing
peak accelerations during the extent of the interaction prior to gas
release. We utilize granular mechanics penetration force laws and
numerical modeling to constrain the packing fraction of material in
the upper few 10's cm of Bennu.