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Toshiyuki Nakata

Showing results (1-10 of 27) with videos related to

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Proceedings. Biological Sciences|August 12, 2011
Aerodynamic performance of a hovering hawkmoth with flexible wings: a computational approachToshiyuki Nakata, Hao Liu
Frontiers in Bioengineering and Biotechnology|May 10, 2021
Flexibility Effects of a Flapping Mechanism Inspired by Insect Musculoskeletal System on Flight PerformanceSakito Koizumi, Toshiyuki Nakata, Hao Liu
Biomimetics (Basel, Switzerland)|October 23, 2019
Development of Mixed Flow Fans with Bio-Inspired GroovesJinxin Wang, Toshiyuki Nakata, Hao Liu
Biomimetics (Basel, Switzerland)|December 22, 2023
Effect of Hindwings on the Aerodynamics and Passive Dynamic Stability of a Hovering HawkmothRyusuke Noda, Toshiyuki Nakata, Hao Liu
Frontiers in Bioengineering and Biotechnology|May 24, 2021
Flexible Flaps Inspired by Avian Feathers Can Enhance Aerodynamic Robustness in low Reynolds Number AirfoilsYuta Murayama, Toshiyuki Nakata, Hao Liu
Journal of Fluid Mechanics|June 28, 2016
A CFD-informed quasi-steady model of flapping wing aerodynamicsToshiyuki Nakata, Hao Liu, Richard J Bomphrey
Bioinspiration & Biomimetics|October 21, 2017
Forewings match the formation of leading-edge vortices and dominate aerodynamic force production in revolving insect wingsDi Chen, Dmitry Kolomenskiy, Toshiyuki Nakata, et al.
Bioinspiration & Biomimetics|September 28, 2020
Intermittent control strategy can enhance stabilization robustness in bumblebee hoveringRu Xu, Toshiyuki Nakata, Xuefei Cai, et al.
Bioinspiration & Biomimetics|July 5, 2017
Owl-inspired leading-edge serrations play a crucial role in aerodynamic force production and sound suppressionChen Rao, Teruaki Ikeda, Toshiyuki Nakata, et al.
Nature Communications|March 2, 2016
Enhanced flight performance by genetic manipulation of wing shape in DrosophilaRobert P Ray, Toshiyuki Nakata, Per Henningsson, et al.
Pageof 3

Showing results (1-10 of 27) with videos related to

Sort By:
Pageof 3
Proceedings. Biological Sciences|August 12, 2011
Aerodynamic performance of a hovering hawkmoth with flexible wings: a computational approachToshiyuki Nakata, Hao Liu
Frontiers in Bioengineering and Biotechnology|May 10, 2021
Flexibility Effects of a Flapping Mechanism Inspired by Insect Musculoskeletal System on Flight PerformanceSakito Koizumi, Toshiyuki Nakata, Hao Liu
Biomimetics (Basel, Switzerland)|October 23, 2019
Development of Mixed Flow Fans with Bio-Inspired GroovesJinxin Wang, Toshiyuki Nakata, Hao Liu
Biomimetics (Basel, Switzerland)|December 22, 2023
Effect of Hindwings on the Aerodynamics and Passive Dynamic Stability of a Hovering HawkmothRyusuke Noda, Toshiyuki Nakata, Hao Liu
Frontiers in Bioengineering and Biotechnology|May 24, 2021
Flexible Flaps Inspired by Avian Feathers Can Enhance Aerodynamic Robustness in low Reynolds Number AirfoilsYuta Murayama, Toshiyuki Nakata, Hao Liu
Journal of Fluid Mechanics|June 28, 2016
A CFD-informed quasi-steady model of flapping wing aerodynamicsToshiyuki Nakata, Hao Liu, Richard J Bomphrey
Bioinspiration & Biomimetics|October 21, 2017
Forewings match the formation of leading-edge vortices and dominate aerodynamic force production in revolving insect wingsDi Chen, Dmitry Kolomenskiy, Toshiyuki Nakata, et al.
Bioinspiration & Biomimetics|September 28, 2020
Intermittent control strategy can enhance stabilization robustness in bumblebee hoveringRu Xu, Toshiyuki Nakata, Xuefei Cai, et al.
Bioinspiration & Biomimetics|July 5, 2017
Owl-inspired leading-edge serrations play a crucial role in aerodynamic force production and sound suppressionChen Rao, Teruaki Ikeda, Toshiyuki Nakata, et al.
Nature Communications|March 2, 2016
Enhanced flight performance by genetic manipulation of wing shape in DrosophilaRobert P Ray, Toshiyuki Nakata, Per Henningsson, et al.
Pageof 3