Cell Structure Designed from the Viewpoints of Mass and Heat Transfer for Increasing Power Output
Author:
Affiliation:
1. Faculty of Engineering, Hokkaido University
2. Graduate School of Science and Engineering, Ibaraki University
Publisher
Sumart Processing Society for Minerals, Environment and Energy
Link
https://www.jstage.jst.go.jp/article/jspmee/12/3/12_99/_pdf
Reference21 articles.
1. 1) Y. Tabe and S. Sakaida: “Advances in micro/nano thermal engineering”, NTS, (2021), 368-373. (in Japanese)
2. 2) S. Uemura: “Study on transport phenomena in a lithium-air battery”, CMC, (2022), 16-22. (in Japanese)
3. 3) Zi. Lu, M. M.Daino, C. Rath, and S. G. Kandlikar: “Water management studies in PEM fuel cells, part III: “Dynamic breakthrough and intermittent drainage characteristics from GDLs with and without MPLs”, International Journal of Hydrogen Energy, 35 (2010), 4222-4233.
4. 4) S. Sakaida, Y. Tabe and T. Chikahisa: “Large scale simulation of liquid water transport in a gas diffusion layer of polymer electrolyte membrane fuel cells using the lattice Boltzmann method”, Journal of Power Sources, 361 (2017), 133-143.
5. 5) S. Sakaida, Y. Takahashi, K. Tanaka and M. Konno: “Improvement of polymer electrolyte fuel cell performance by gas diffusion layer with relatively hydrophilic surface”, Journal of Power Sources, J518 (2022), 230730.
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