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Dive into the research topics where Hisato Tagawa is active.

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Featured researches published by Hisato Tagawa.


Journal of Turbomachinery-transactions of The Asme | 2016

Improvement of Turbine Vane Film Cooling Performance by Double Flow-Control Devices

Hirokazu Kawabata; Ken-ichi Funazaki; Yuya Suzuki; Hisato Tagawa; Yasuhiro Horiuchi

This study deals with the studies of the effect of flow control double device (DFCD) on a turbine vane film cooling. Aiming for improving film effectiveness, two semi-elliptical DFCDs per a pitch were attached obliquely upstream of the cooling hole. Since the DFCDs were applied to flat plate film cooling in the previous study, the applicability to the turbine vane was investigated in this study. In order to observe a flow field in detail, RANS CFD was conducted first. The DFCDs were installed upstream of each cooling hole of the pressure and suction sides of the vane to investigate the effect of the device position. In this paper, the effects of blowing ratio and cooling hole pitch were also investigated. The results obtained by CFD showed that the vortex generated from DFCD suppressed lift off of the secondary air. As a result, the film effectiveness became significantly higher than that without DFCD condition at high blowing ratio. Moreover, the improvement in the film effectiveness by DFCD was observed by both of the pressure and suction sides of the turbine vane. Based on the findings through RANS simulation, adiabatic effectiveness and total pressure loss coefficient measurement were performed in a linear cascade test facility. The experiment confirmed that the film effectiveness improved when DFCDs existed.


ASME Turbo Expo 2015: Turbine Technical Conference and Exposition | 2015

Improvement of Turbine Vane Film Cooling Performance by Double Flow Control Devices

Hirokazu Kawabata; Ken-ichi Funazaki; Yuya Suzuki; Hisato Tagawa; Yasuhiro Horiuchi

This study deals with the studies of the effect of flow control double devices (DFCDs) on turbine vane film cooling. Aiming for improving film effectiveness, two semi-spheroid DFCDs per pitch were attached to the vane surface upstream of the cooling hole. Although the DFCDs were successfully applied to the flat plate film cooling in the previous study, the applicability to the turbine vane was to be investigated. In order to observe the flow field in detail, RANS simulation was conducted first. The DFCDs were installed upstream of each cooling hole of the pressure and suction sides of the vane to investigate the effect of the device position. In this paper, the effects of blowing ratio and cooling hole pitch were also investigated. The results obtained by CFD showed that the vortex generated from DFCD suppressed lift off of the secondary air. As a result, the film effectiveness became significantly higher than that without DFCD condition. Moreover, the improvement in the film effectiveness by DFCD was observed by both of the pressure and suction sides of the turbine vane. Based on the findings through RANS simulation, adiabatic effectiveness and total pressure loss coefficient measurement were performed in a linear cascade test facility. The experiment confirmed that the film effectiveness was improved when DFCDs existed.Copyright


Journal of Engineering for Gas Turbines and Power-transactions of The Asme | 2013

Progress of the 40 MW-Class Advanced Humid Air Turbine Tests

Manabu Yagi; Hidefumi Araki; Hisato Tagawa; Tomomi Koganezawa; Chihiro Myoren; Takuya Takeda


Archive | 2014

Gas Turbine, Gas Turbine Blade, and Manufacturing Method of Gas Turbine Blade

Tetsuro Morisaki; Hisato Tagawa; Manabu Yagi; Yasuhiro Horiuchi; Shinichi Higuchi


Archive | 2015

Gas turbine noozle end wall cooling

Hisato Tagawa; Yasuhiro Horiuchi


The Proceedings of Conference of Tohoku Branch | 2017

Development of Double Flow Control Devices: Optimization under High Blowing Ratio: -高吹き出し比条件下における最適形状検討-

Hayato Takisawa; Ken-ichi Funazaki; Tomohiro Kawamura; Hisato Tagawa; Susumu Nakano


The Proceedings of The Computational Mechanics Conference | 2014

Optimization for Flow Control Device of Film Cooling : Effects of flow angle against the devices

Hirokazu Kawabata; Ken-ichi Funazaki; Hisato Tagawa; Yasuhiro Horiuchi


The Proceedings of Conference of Tohoku Branch | 2014

158 Study on the external and inside flow field at gas turbine film cooling

Daichi Takahashi; Ken-ichi Funazaki; Hirokazu Kawabata; Syun Fujita; Hisato Tagawa


Journal of the Gas Turbine Society of Japan | 2014

Study of Optimization Technique Using Taguchi Method for Flow Control Device (FCD) of Film Cooling

Hirokazu Kawabata; Ken-ichi Funazaki; Ryota Nakata; Hisato Tagawa; Yasuhiro Horiuchi


Archive | 2013

Gas turbine blade, gas turbine, and corresponding manufacturing method

Tetsuro Morisaki; Hisato Tagawa; Manabu Yagi; Yasuhiro Horiuchi; Shinichi Higuchi

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