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Dive into the research topics where Masato Kiuchi is active.

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Featured researches published by Masato Kiuchi.


Progress in Earth and Planetary Science | 2018

Laboratory experiments on agglomeration of particles in a granular stream

Yuuya Nagaashi; Tomomi Omura; Masato Kiuchi; Akiko M. Nakamura; Koji Wada; Sunao Hasegawa

AbstractInelastic collisions occur among regolith particles, such as those in the ejecta curtain from a crater, and may cause clustering or agglomeration of particles and thus produce discrete patterns of ejecta deposits around a crater. Previous studies have shown that clusters, and even agglomerates, are formed via mutual, inelastic collisions of spherical particles due to adhering forces between particles in granular streams. To investigate the condition of agglomerate formation in granular streams, we conducted laboratory experiments of granular streams using both spherical and irregular, non-spherical particles. Measurements of particle adhesion in this study were performed using a centrifugal separation method, in contrast to the previous study in which atomic force microscopy (AFM) was used. This enabled simultaneous measurements of multiple particles of various shapes for a statistical analysis of the results. With similar relative velocities and adhesion values, irregular particles were found to form agglomerates much more easily than spherical particles. The axial ratio of the agglomerates of spherical particles and irregular particles was similar and was in accordance with those observed in previous laboratory studies, whereas the size of the agglomerates of irregular particles was larger than the size of spherical particles. The degree of agglomeration and the size of agglomerates can be used as an indicator of the shape or adhesive force of the particles in granular stream. Our findings on agglomeration in granular streams could provide new insights into the origin of rays on airless bodies and grooves on Phobos.


Icarus | 2014

Relationship between regolith particle size and porosity on small bodies

Masato Kiuchi; Akiko M. Nakamura


Transactions of The Japan Society for Aeronautical and Space Sciences, Space Technology Japan | 2016

Centrifugal Experiments with Simulated Regolith: Effects of Gravity, Size Distribution, and Particle Shape on Porosity

Tomomi Omura; Masato Kiuchi; C. Güttler; Akiko M. Nakamura


Japan Geoscience Union | 2017

Experimental study of low velocity impact onto granular media under reduced gravities:Effects of the regolith layer strength

Masato Kiuchi; Akiko M. Nakamura; Koji Wada


Japan Geoscience Union | 2017

Regolith on iron bodies

Akiko M. Nakamura; Ryo Ogawa; Tomomi Omura; Masato Kiuchi; Ayako Suzuki; Sunao Hasegawa


Japan Geoscience Union | 2016

The origin of Itokawa dimples and a comparison with the surface structure of Phobos

Masato Kiuchi; Akiko M. Nakamura


Japan Geoscience Union | 2015

Porosity of Granular Surface of Small Bodies - Relationship between Pressure and Porosity

Tomomi Omura; Masato Kiuchi; Carsten Guettler; Akiko M. Nakamura


Japan Geoscience Union | 2015

Experimental study on low velocity impact onto granular media:Dependence on gravity acceleration and ambient pressure

Masato Kiuchi; Akiko M. Nakamura


Icarus | 2015

Corrigendum to “Relationship between regolith particle size and porosity on small bodies” [Icarus 239 (2014) 291–293]

Masato Kiuchi; Akiko M. Nakamura


Japan Geoscience Union | 2014

Experimental study of compaction process of powder bed by centrifuge experiment

Tomomi Omura; Masato Kiuchi; Carsten Guettler; Akiko M. Nakamura

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Koji Wada

Chiba Institute of Technology

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Sunao Hasegawa

Planetary Science Institute

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Ayako Suzuki

University of Minnesota

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Sunao Hasegawa

Planetary Science Institute

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