Biography

Shouichiro Iio

Shinshu University, JAPAN

Associate Professor


Email: [email protected]


Qualifications

2004 Ph.D., Mechanical Engineering, Miyazaki University, Japan

2000 M.Sc., Mechanical Engineering, Miyazaki University, Japan

1998 B.Sc., Mechanical Engineering, Miyazaki University, Japan


Publications (Selected)

  1. Fujisawa, N., Uchiyama, T., & Iio, S. (2025). Review on the performance of crossflow hydraulic turbine for local power generation: Fundamentals and applications. Next Energy, 8, 100346.
  2. Fujisawa, N., Iio, S., & Uchiyama, T. (2024). Numerical Study on Improvement of Power Performance of Waterfall Crossflow Hydraulic Turbine. Journal of Flow and Energy, 2, 107-117.
  3. Shirai, H., Takahashi, K., Di Pietro, E., Abate, D., Abdel Maksoud, W., Abe, H., Iio, S.,... & Kazakov, Y. (2024). Recent progress of JT-60SA project toward plasma operation. Nuclear Fusion, 64(11), 112008.
  4. Geng, Y., Kitahora, T., Iio, S., Choi, Y. D., & Inagaki, M. (2024, February). Study on the optimum design of cross flow water turbines using RSM with weighted least squares method. In Journal of Physics: Conference Series (Vol. 2707, No. 1, p. 012066). IOP Publishing.
  5. Yoshida, M., Giruzzi, G., Aiba, N., Artaud, J. F., Ayllon-Guerola, J., Balbinot, L., Iio, S.,... & Zani, L. (2022). Plasma physics and control studies planned in JT-60SA for ITER and DEMO operations and risk mitigation. Plasma Physics and Controlled Fusion, 64(5), 054004.
  6. Ogawa, N., Goto, M., Iio, S., Kitahora, T., Choi, Y. D., & Inagaki, M. (2021). Performance improvement of cross-flow turbine with a cylindrical cavity and guide wall. Journal of Fluids Engineering, 143(12), 121104.
  7. Takamure, K., Wang, H., Uchiyama, T., Iio, S., & Ikeda, T. (2021). Vortex-in-cell simulation of the flow and performance of a Savonius hydraulic turbine with S-shaped blades. Journal of Renewable and Sustainable Energy, 13(4).
  8. Uchiyama, T., Gu, Q., Degawa, T., Iio, S., Ikeda, T., & Takamure, K. (2020). Numerical simulations of the flow and performance of a hydraulic Savonius turbine by the vortex in cell method with volume penalization. Renewable Energy, 157, 482-490.
  9. Haneda, Y., Takeuchi, Y., Teramoto, H., Iio, S., & Watanabe, M. (2019). Enhancement of impinging jet heat transfer on inner half-cylinder using two semicircular plates mounted near both sides of the convex curved exit. International Journal of Thermal Sciences, 138, 174-189.
  10. Azegami, T., Katayama, Y., Haneda, Y., & Iio, S. (2019, March). Performance of a submerged impulse hydro turbine. In IOP Conference Series: Earth and Environmental Science (Vol. 240, No. 4, p. 042014). IOP Publishing.
  11. Okabe, H., Tanaka, Y., Watanabe, A., Yoshida, F., Iio, S., & Haneda, Y. (2019, March). Cavitation in a spool valve for water hydraulics. In IOP Conference Series: Earth and Environmental Science (Vol. 240, No. 6, p. 062029). IOP Publishing.
  12. Iio, S., Hayashi, K., Akahane, E., Katayama, Y., Li, X., & Kagawa, T. (2016). Suppression of vortex precession in a non-contact handling device by a circular column. Journal of Flow Control, Measurement & Visualization, 4(2), 70-78.
  13. Yoshida, F., Iio, S., Ito, K., & Kitagawa, A. (2016). Experimental and theoretical analysis of active charge accumulator for water hydraulics system. IEEE Access, 5, 881-890.
  14. Uchiyama, T., Mizoguchi, S., Iio, S., Katayama, Y., & Ikeda, T. (2016). Effects of clearance between rotor and ground on the performance of an open cross-flow-type nano-hydraulic turbine. J. Energy Power Eng., 10, 465-473.
  15. Yoshida, F., Ito, K., Iio, S., & Kitagawa, A. (2015, July). Effect of Parameter on Characteristics of Active Charge Accumulator for Water Hydraulic System. In Fluids Engineering Division Summer Meeting (Vol. 57213, p. V01AT11A001). American Society of Mechanical Engineers.
  16. Uchiyama, T., Uehara, S., Fukuhara, H., Iio, S., & Ikeda, T. (2015). Numerical study on the flow and performance of an open cross-flow mini-hydraulic turbine. Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy, 229(8), 968-977.
  17. Katayama, Y., Iio, S., Veerapun, S., & Uchiyama, T. (2015). Investigation of Blade Angle of an Open Cross-Flow Runner. International Journal of Turbo & Jet-Engines, 32(1).
  18. Katayama, Y., Iio, S., Uchiyama, T., & Ikeda, T. (2014). Effect of flow condition on undershot water wheel performance. International Review of Mechanical Engineering, 8(6), 1005-1011.
  19. Katayama, Y., Iio, S., & Veerapun, S. (2014). Effect of runner position on performance for open type cross-flow turbine utilizing waterfalls. International Review of Mechanical Engineering, 8(6), 1012-1016.
  20. Ito, K., Iio, S., Yoshida, F., & Kitagawa, A. (2014, October). Characteristic of pressure converter by active charge accumulator for water hydraulic system. In Proc. MATSUE (pp. 650-655).



Profile Details

https://soar-rd.shinshu-u.ac.jp/search/detail.html?systemId=HecNbpkh&lang=en 

https://scholar.google.com/citations?user=gLu9TNkAAAAJ&hl=ja

https://www.researchgate.net/profile/Shouichiro-Iio


WoS Researcher ID: L-9519-2018


SCIRP Newsletter
Copyright © 2006-2026 Scientific Research Publishing Inc. All Rights Reserved.
Top