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)
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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.
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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.
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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.
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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.
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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.
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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.
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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).
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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.
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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.
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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.
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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.
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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.
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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.
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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.
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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.
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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.
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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).
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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.
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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.
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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