Journal of the Japan Institute of Energy
Online ISSN : 1882-6121
Print ISSN : 0916-8753
ISSN-L : 0916-8753
Volume 99, Issue 4
Displaying 1-3 of 3 articles from this issue
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Original Paper
  • Yuya ONO, Tomohiro OTANI, Masahiko OKUMURA, Shinji HAMANISHI, Yasuhiro ...
    Article type: Original Paper
    2020 Volume 99 Issue 4 Pages 41-51
    Published: April 20, 2020
    Released on J-STAGE: April 30, 2020
    JOURNAL FREE ACCESS

    Numerical analysis was performed by Discrete Element Method in consideration of expansion and contraction of particles to investigate the stress developed on the wall in the vessel of the packed bed of hydrogen storage alloy. For the packed bed composed of the spherical particles with a diameter of 2 and 7 mm, the effect of the expansion and contraction of the particles on the packing ratio and the stress developed on the wall was investigated. It was shown that smaller particles moved through the gaps between the particles by repeating expansion and contraction of particles, and the packing ratio and the stress became higher at the lower part of the packed bed. The effect of the expansion and contraction of the particles on the packing ratio and the stress developed on the wall in the vessel was also examined for the packed bed composed of the spherical, tetrahedral or cubic particles. The packing ratio in each region and the stress developed on the wall in the vessel were different depending on the shape of particles. From these results, it was shown that the shape and the movement of the particles affect the stress developed on the wall.

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