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Featured researches published by Yoshimitsu Hashizume.


ASME-JSME-KSME 2011 Joint Fluids Engineering Conference: Volume 1, Symposia – Parts A, B, C, and D | 2011

Experimental and Numerical Investigation of Automotive Wind Throb Phenomenon

Keiichiro Iida; Yoshimitsu Hashizume; Hiroshi Narita; Long Wu; Ganapathi Balasubramanian; Bernd Crouse

Sunroof wind throb can generate annoyingly high sound-pressure levels (SPL) inside the vehicle cabin. In this study, several deflector configurations were installed to investigate this flow-acoustic coupled resonance phenomenon in passenger cars. In each condition, comparisons between the experimental results and numerical simulations were performed over a range of wind speeds to validate the capability of the PowerFLOW numerical simulation for wind throb prediction. Experiments were performed at the Suzuki full scale wind tunnel. One microphone in the cabin was set to record the pressure history and SPL. Flow around the sunroof was also measured by PIV. In both experiments and simulations, the following phenomena were observed. In case of strong wind throb, flow separates from the deflector and strong periodic vortices in the shear layer were observed. These vortices break down due to the impingement at the back-end of the sunroof and generate a strong peak noise in the cabin. In case of no wind throb, the periodic vortices were not observed resulting in a very weak peak with low SPL in the cabin. The deflector study shows that wind throb is a highly sensitive phenomenon where even a small geometry variation at the critical region can affect the phenomenon significantly. In this study, the same trend was obtained in the experimental results and simulations. It shows that the numerical simulation can be used for a priori predictions in the early stages of the vehicle design process.© 2011 ASME


SAE International Journal of Passenger Cars - Electronic and Electrical Systems | 2014

Vehicle Aerodynamics Simulation for the Next Generation on the K Computer: Part 1 Development of the Framework for Fully Unstructured Grids Using up to 10 Billion Numerical Elements

Makoto Tsubokura; Andrew Kerr; Keiji Onishi; Yoshimitsu Hashizume


SAE International Journal of Passenger Cars - Electronic and Electrical Systems | 2014

Study on the Transient Behaviour of the Vortex Structure behind Ahmed Body

Itsuhei Kohri; Teppei Yamanashi; Takayoshi Nasu; Yoshimitsu Hashizume; Daichi Katoh


SAE International Journal of Passenger Cars - Electronic and Electrical Systems | 2016

Experimental Analysis on the Transitional Mechanism of the Wake Structure of the Ahmed Body

Itsuhei Kohri; Yuji Kobayashi; Akira Kasai; Takayoshi Nasu; Daichi Katoh; Yoshimitsu Hashizume


SAE 2016 World Congress and Exhibition | 2016

Prediction of Aeroacoustical Interior Noise of a Car, Part-1 Prediction of Pressure Fluctuations on External Surfaces of a Car

Yoshinobu Yamade; Chisachi Kato; Shinobu Yoshimura; Akiyoshi Iida; Keiichiro Iida; Kunizo Onda; Yoshimitsu Hashizume; Yang Gou


SAE 2016 World Congress and Exhibition | 2016

Numerical Analysis on the Transitional Mechanism of the Wake Structure of the Ahmed Body

Yuji Kobayashi; Itsuhei Kohri; Akira Kasai; Takayoshi Nasu; Daichi Katoh; Yoshimitsu Hashizume


SAE 2016 World Congress and Exhibition | 2016

Prediction of Aeroacoustical Interior Noise of a Car, Part-2 Structural and Acoustical Analyses

Keiichiro Iida; Kunizo Onda; Akiyoshi Iida; Chisachi Kato; Shinobu Yoshimura; Yoshinobu Yamade; Yoshimitsu Hashizume; Yang Guo


SAE International Journal of Passenger Cars - Electronic and Electrical Systems | 2014

Differences between Air-Dam Spoiler Performances in Wind Tunnel and On-Road Tests

Daichi Katoh; Kensuke Koremoto; Munetsugu Kaneko; Yoshimitsu Hashizume


SAE 2011 World Congress & Exhibition | 2011

Comparison of Impact Due to an Aerodynamic Component in Wind Tunnel and On-Road Tests

Daichi Katoh; Yoshimitsu Hashizume; Itsuhei Kohri; Michitosh Takagi


Transactions of the Society of Automotive Engineers of Japan | 2017

Elucidation of Aerodynamic Drag Reduction Mechanism Due to Air-dam Spoiler

Daichi Katoh; Yoshimitsu Hashizume

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Daichi Katoh

Suzuki Motor Corporation

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Keiichiro Iida

Suzuki Motor Corporation

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Akiyoshi Iida

Toyohashi University of Technology

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