Research, Test and Operation Technology Grp.

船木 一幸

フナキ イッコウ  (Ikkoh Funaki)

基本情報

所属
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 宇宙飛翔工学研究系 教授
総合研究大学院大学 先端学術院 宇宙科学コース 教授
学位
博士(工学)(1995年3月 東京大学)

J-GLOBAL ID
200901056190267532
researchmap会員ID
1000253787

外部リンク

論文

 329
  • Yuya Oshio, Hiroki Watanabe, Ikkoh Funaki
    Journal of Evolving Space Activities, accepted 2026年  査読有り
  • Ikkoh Funaki, Daiki Koda, Shunichiro Ide, Yasuyoshi Hisamoto, Yuta Nakajima, Hiroaki Kusawake, Tadahiko Sano, Tsutomu Fukatsu, Mineko Minami, Akira Ogawa, Shinatora Cho, Hiroki Watanabe, Yoshiki Matsunaga, Yasushi Ohkawa, Shun Imai, Yoshitaka Tani, Yosuke Tashiro, Yasushi Odawara
    Journal of Electric Propulsion, 5, 6 2026年  査読有り
  • Satoru Sawada, Noboru Itouyama, Ken Matsuoka, Jiro Kasahara, James Braun, Guillermo Paniagua, Akira Kawasaki, Kazuyuki Higashino, Akiko Matsuo, Ikkoh Funaki
    Journal of Propulsion and Power 41(2) 164-177 2025年3月  査読有り
    This paper explores the innovative direction control of rotating detonation waves in rotating detonation engines (RDEs) by adjusting the ignition location and employing helical combustors with a sinusoidal cross section. In our experimental setup, we conducted 25 combustion tests using two distinct combustor geometries, each featuring different helical profile directions. The following conclusion drawn from the results: when the ignition was positioned 30.6–46.0 mm from the inlet, the detonation wave direction was invariably influenced by the helical direction. This correlation was statistically significant, with an occurrence probability (assuming a random direction probability of 0.5) being [Formula: see text], far exceeding the 0.05 significance level. Furthermore, the helical combustors generated a measurable torque due to the pressure differentials created by shock waves within the combustor. This torque, recorded between [Formula: see text] at a mass flow rate of 28.5–29.0 g/s, indicates the potential of power extraction from the combustor. Notably, the torque direction was also controllable via the helical direction. This study presents a significant advancement in propulsion technology, demonstrating a novel method to control detonation wave direction and torque generation in RDEs through helical combustor design, paving the way for more efficient and controllable propulsion systems.
  • Yuya Oshio, Shogo Masuyama, Hiroki Watanabe, Ikkoh Funaki
    Journal of Electric Propulsion 1-19 2025年3月  査読有り
  • Tomoki Sato, Ken Matsuoka, Noboru Itouyama, Masaaki Yasui, Koichi Matsuyama, Yuichiro Ide, Kotaro Nakata, Yamato Suzuki, Ryoto Ishibashi, Sota Suzuki, Jiro Kasahara, Akira Kawasaki, Hidetoshi Hirashima, Daisuke Nakata, Hikaru Eguchi, Tomoyuki Takano, Masaharu Uchiumi, Takehiro Himeno, Yusei Yahata, Akiko Matsuo, Ikkoh Funaki, Hiroto Habu, Satoshi Arakawa, Junichi Masuda, Kosuke Kawahara, Tomoaki Usuki, Kenji Maehara, Maki Shida, Tatsuro Nakao, Kazuhiko Yamada
    Journal of Spacecraft and Rockets, published online 2025年  査読有り

MISC

 445

主要な書籍等出版物

 6
  • 船木 一幸, 山川 宏
    In-Tech 2012年3月 (ISBN: 9789535103394)

講演・口頭発表等

 655

共同研究・競争的資金等の研究課題

 31

産業財産権

 4