研究者詳細

顔写真

ハギタ ヤスハル
萩田 泰晴
Yasuharu Hagita
所属
大学院工学研究科 航空宇宙工学専攻 航空システム講座(空力設計学分野)
職名
特任研究員
学位
  • 博士(情報科学) (東北大学)

経歴 1

  • 2026年4月 ~ 継続中
    東北大学 大学院工学研究科 航空宇宙工学専攻 特任研究員

学歴 3

  • 東北大学 大学院情報科学研究科 情報基礎科学専攻

    2023年4月 ~ 2026年3月

  • 東北大学 大学院情報科学研究科 情報基礎科学専攻

    2021年10月 ~ 2023年3月

  • 東北大学 工学部 機械知能・航空工学科

    2018年4月 ~ 2021年9月

所属学協会 1

  • 日本ガスタービン学会

    2021年7月 ~ 継続中

研究キーワード 4

  • 気液二相流

  • ターボ機械

  • 非平衡凝縮

  • 数値流体力学

研究分野 2

  • フロンティア(航空・船舶) / 航空宇宙工学 /

  • ものづくり技術(機械・電気電子・化学工学) / 流体工学 /

受賞 2

  1. 学生優秀講演賞

    2024年10月 日本ガスタービン学会 凝縮を伴う蒸気タービン翼列流れのLES

  2. 機械系優秀学生賞

    2023年3月 東北大学 大学院情報科学研究科

論文 5

  1. Effects of humidity on transonic buffet over an airfoil 査読有り

    Tomoya Takuma, Yasuharu Hagita, Hironori Miyazawa, Takashi Furusawa, Satoru Yamamoto

    Physics of Fluids 38 (3) 2026年3月1日

    出版者・発行元: AIP Publishing

    DOI: 10.1063/5.0319443  

    ISSN:1070-6631

    eISSN:1089-7666

    詳細を見る 詳細を閉じる

    Aircraft often operate in humid atmospheres, where water-vapor phase changes can alter the flow structure. Although buffeting is observed around airfoils under certain operating conditions in the transonic regime, the effects of humidity on this phenomenon remain insufficiently understood. In this study, numerical simulations were conducted to clarify the effects of atmospheric humidity on transonic buffet over an airfoil. A delayed detached-eddy simulation was applied to the transonic flow around an OAT15A supercritical airfoil, which exhibited a typical buffet phenomenon in the experiment. The governing equations were coupled with a nonequilibrium condensation model that included homogeneous nucleation and droplet growth. The free-stream relative humidity (RH) was varied from 0% to 100%. Under the dry condition, a typical transonic buffet is reproduced, consistent with the experimental observations. As the humidity increases, the latent heat release in the supersonic region ahead of the main shock reduces the effective Mach number, weakens the main shock, and shifts it downstream. At an intermediate humidity (approximately 60% RH), the flow becomes quasi-steady: a condensation shock forms upstream, and a lambda-shaped stepped compression appears, which eases the shock/boundary-layer interaction and strongly suppresses the large-amplitude buffet. At a higher humidity, a self-sustained unsteadiness develops, characterized by moving shocks that detach from the main shock and propagate toward the leading edge. This resulted in oscillations with a higher dominant frequency than in dry air. Dynamic mode decomposition shows that the suction-side feedback mechanisms differ between dry and high-humidity conditions. Moreover, aerodynamic performance varied nonmonotonically with humidity.

  2. アンモニア燃料で稼働する産業用ガスタービン圧縮機の非定常流動シミュレーション 査読有り

    宮澤 弘法, 萩田 泰晴, 古澤 卓, 山本 悟, 梅沢 修一, 米澤 宏一, 八木 啓介, 宮垣 寛之

    日本機械学会論文集 2026年

    出版者・発行元:

    DOI: 10.1299/transjsme.26-00023  

    eISSN:2187-9761

  3. High-fidelity large eddy simulation of transonic wet steam flows through a steam turbine cascade 査読有り

    Yasuharu Hagita, Hironori Miyazawa, Takashi Furusawa, Satoru Yamamoto

    International Journal of Heat and Mass Transfer 252 2025年12月

    DOI: 10.1016/j.ijheatmasstransfer.2025.127415  

  4. Self-Organization of Unsteady Full-Annulus Flows in a Gas Turbine Compressor Under Operating Conditions 査読有り

    Yasuharu Hagita, Riku Hayakawa, Hironori Miyazawa, Takashi Furusawa, Satoru Yamamoto

    Volume 6: Education; Electric Power; Energy Storage; Fans and Blowers 2023年6月26日

    出版者・発行元: American Society of Mechanical Engineers

    DOI: 10.1115/gt2023-101937  

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    Abstract In Japan, gas turbine combined cycle (GTCC) power plants are currently operated under rapid start-up, shutdown, and partial-load conditions to maintain a stable power supply, suppressing the fluctuation of electric power due to renewable energy sources such as solar and wind power. The off-design condition may cause unsteady and unstable flows in the compressor stage, increasing mechanical stresses on the blades. To reveal the critical flow behavior and avoid blade failure, an innovative method that can clarify the flow physics in these systems is urgently required. This study proposes a classification method for time-series big data obtained from full-annulus flow computations under various flow conditions assisted by the self-organizing map (SOM) method, which is a popular machine-learning technique. First, full-annulus unsteady flow computations under various flow conditions were conducted for an actual compressor in an industrial gas turbine at a GTCC power plant. The inlet guide vane (IGV) angle was set to various values that corresponded to the full-load operation and transitional flow rate conditions during partial-load operation. The time-series data of the load on the blades in the various cases were obtained from the computations. All time-series data were converted into frequency data using fast Fourier transform (FFT) and classified by the SOM. As a result, the proposed classification method could appropriately classify the critical flow conditions in which large and unstable pressure fluctuations are observed. This method may be used to avoid critical operating conditions that lead to blade failure.

  5. The Effect of Partial-Load Operation on a Gas Turbine Compressor of an Advanced Combined Cycle Power Plant 査読有り

    Yasuharu Hagita, Hironori Miyazawa, Takashi Furusawa, Satoru Yamamoto, Koichi Yonezawa, Shuichi Umezawa, Shuichi Ohmori, Takeshi Suzuki

    Volume 10D: Turbomachinery — Multidisciplinary Design Approaches, Optimization, and Uncertainty Quantification; Turbomachinery General Interest; Unsteady Flows in Turbomachinery 2022年6月13日

    出版者・発行元: American Society of Mechanical Engineers

    DOI: 10.1115/gt2022-80251  

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    Abstract Gas turbine combined cycle (GTCC) power plants daily undergo start-up, shutdown and partial-load operations to maintain load invariance of electric power supply. The off-design conditions in this process may give rise to unexpected and unsteady flow behavior in the gas turbine, resulting in fatigue failure. JERA Co. Inc. currently operates gas turbines at many advanced combined cycle (ACC) power plants using a start-up and a partial-load operations. During the start-up procedure, some machine vibrations were reported at the ACC power plant when acoustic emission (AE) measurements were applied to the gas turbine compressor. A small crack in the first-stage stator blade was found at another unit during the overhaul. The partial-load operation may be in a similar condition to that in the startup procedure. This study elucidated the cause of machine vibration measured in an actual gas turbine compressor of an ACC power plant using full-annulus flow computation to indicate the possibility of blade failure. The full-annulus unsteady flows through the inlet guide vanes (IGV) and 1.5 rotor and stator stages in the compressor were simulated. The frequency of the simulated vibration was compared with that of the natural vibration of the blades, which was obtained by conducting eigenvalue analysis. The results for the partial-load condition captured an abnormal vibration resulting from a rotating stall. The rotating stall frequency closely matched the second-mode frequency of the first-stage stator blade’s natural vibration. This result suggests that the partial-load condition could be related to the cause of the blade failure due to the blade vibration.

講演・口頭発表等 13

  1. アンモニア燃焼産業用ガスタービン圧縮機の性能解析

    宮澤 弘法, 萩田 泰晴, 古澤 卓, 山本 悟, 梅沢 修一, 鈴木 武志, 米澤 宏一, 山田 貴哉, 宮垣 寛之, 林 雅生

    第30回動力・エネルギー技術シンポジウム 2026年6月4日

  2. バフェット現象を伴う遷音速湿り空気流れの数値シミュレーション

    宅間 智哉, 萩田 泰晴, 宮澤 弘法, 古澤 卓, 山本 悟

    第39回数値流体力学シンポジウム 2025年12月17日

  3. Numerical Simulation of Transonic Buffet in Moist-Air Flows

    Tomoya Takuma, Yasuharu Hagita, Hironori Miyazawa, Takashi Furusawa, Satoru Yamamoto

    The Eleventh JSME-KSME Thermal and Fluids Engineering Conference 2025年10月22日

  4. High-Fidelity Simulation of Turbulent Wet Steam Flows in a Steam Turbine Cascade

    Yasuharu Hagita, Hironori Miyazawa, Takashi Furusawa, Satoru Yamamoto

    The Eleventh JSME-KSME Thermal and Fluids Engineering Conference 2025年10月22日

  5. アンモニア燃料で稼働する産業用ガスタービン圧縮機の非定常流動シミュレーション

    宮澤 弘法, 萩田 泰晴, 古澤 卓, 山本 悟, 梅沢 修一, 米澤 宏一, 八木 啓介, 宮垣 寛之

    第29回動力・エネルギー技術シンポジウム 2025年6月5日

  6. 凝縮を考慮した湿り空気遷音速バフェットのDDES

    宅間 智哉, 萩田 泰晴, 宮澤 弘法, 古澤 卓, 山本 悟

    第38回数値流体力学シンポジウム 2024年12月13日

  7. 凝縮を伴う蒸気タービン翼列流れのLES

    萩田 泰晴, 宮澤 弘法, 古澤 卓, 山本 悟

    第52回日本ガスタービン学会定期講演会 2024年10月24日

  8. Simulation Data Classification for Full-annulus Flows of Gas Turbine Compressor

    Riku HAYAKAWA, Yasuharu HAGITA, Hironori MIYAZAWA, Takashi FURUSAWA, Satoru YAMAMOTO

    International Gas Turbine Congress 2023 Kyoto 2023年11月29日

  9. 産業用ガスタービン圧縮機翼列流動の全周計算に基づく不安定稼働条件の分類

    宮澤弘法, 萩田泰晴, 早川陸駆, 古澤卓, 山本悟

    第51回日本ガスタービン学会定期講演会 2023年10月4日

  10. 産業用ガスタービン圧縮機静動翼列における不安定流動の非定常全周シミュレーション

    宮澤弘法, 萩田泰晴, 古澤卓, 山本悟

    第36回数値流体力学シンポジウム 2022年12月15日

  11. 部分負荷運転時の発電用ガスタービン圧縮機を通る湿り空気流れの全周解析

    徳山好紀, 萩田泰晴, 宮澤弘法, 古澤卓, 山本悟

    第50回日本ガスタービン学会定期講演会 2022年10月12日

  12. 全周流動計算に基づく発電用ガスタービン圧縮機部分負荷運転時の安定性向上の検討

    萩田泰晴, 宮澤弘法, 古澤卓, 山本悟

    第50回日本ガスタービン学会定期講演会 2022年10月12日

  13. 電力負荷変動対応時の実機ガスタービンコンプレッサー内部非定常流動解析

    萩田泰晴, 徳山好紀, 宮澤弘法, 古澤卓, 山本悟, 梅沢修一, 米澤宏一, 鈴木武志, 大森修一

    第49回日本ガスタービン学会定期講演会 2021年10月13日

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