Updated on 2025/05/11

Information

 

写真a

 
ZHANG HUACHENG
 
Organization
Faculty of Engineering Department of Mechanical Engineering Academic Researcher
Title
Academic Researcher
Contact information
メールアドレス

Research Areas

  • Manufacturing Technology (Mechanical Engineering, Electrical and Electronic Engineering, Chemical Engineering) / Thermal engineering

  • Manufacturing Technology (Mechanical Engineering, Electrical and Electronic Engineering, Chemical Engineering) / Fluid engineering

Research History

  • Kyushu University Faculty of Engineering Department of Mechanical Engineering  Academic Researcher 

    2023.11 - Present

Education

  • Kyushu University   工学府  

    2020.10 - 2023.9

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    Country:Japan

  • Kyushu University   工学府  

    2017.10 - 2019.9

Research Interests・Research Keywords

  • Research theme: Investigation of Liquid Film Behavior in High-Temperature and High-Pressure Two-Phase Flow

    Keyword: Annular flow; Two-phase flow;BWR;Liquid film

    Research period: 2024.10 - Present

  • Research theme: Development of novel IVR in nuclear reactors using metal honeycomb porous plate for rapid cooling of ultra-high temperature bodies

    Keyword: Quenching;Rapid cooling;Honeycomb Poorus Plate

    Research period: 2023.10 - Present

  • Research theme: Study on characteristics of the liquid film in the upward annular two-phase flow

    Keyword: 二相流;環状流;液膜

    Research period: 2020.4 - 2023.9

Awards

  • 萌芽賞

    2023.8   日本混相流学会  

  • Best Paper Award

    2012.8   American Society of Mechanical Engineers   Measurement of Liquid Film Thickness for Annular Two- Phase HFC134a Gas-Liquid Ethanol Flow in the Vertical Tube, The 28th International Conference on Nuclear Engineering

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    Award type:Award from international society, conference, symposium, etc. 

Papers

  • Experimental study on the upward annular two-phase flow of nitrogen and ethanol aqueous solutions with different concentrations

    Zhang, Huacheng; Umehara, Yutaro; Mori, Shoji

    International Journal of Heat and Mass Transfer   228 ( 125610 )   2024.8

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    Authorship:Lead author  

  • Prediction of interfacial shear stress and pressure drop in vertical two-phase annular flow

    Zhang, Huacheng; Umehara, Yutaro; Yoshida, Hiroyuki; Mori, Shoji

    International Journal of Heat and Mass Transfer   218 ( 124750 )   2024.1

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    Authorship:Lead author  

  • On the velocity and frequency of disturbance waves in vertical annular flow with different surface tension and gas–liquid density ratio

    Zhang, Huacheng; Umehara, Yutaro; Yoshida, Hiroyuki; Mori, Shoj

    International Journal of Heat and Mass Transfer   211 ( 124253 )   2023.9

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    Authorship:Lead author  

  • Effect of gas density and surface tension on liquid film thickness in vertical upward disturbance wave flow

    Zhang, Huacheng; Mori, Shoji; Hisano, Tutomu; Yoshida, Hiroyuki

    International Journal of Multiphase Flow   159 ( 104342 )   2023.2

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    Authorship:Lead author  

  • Drop Evaporation on Rough Hot-Spots: Effect of Wetting Modes Reviewed

    Zhang, Huacheng; Kita, Yutaku; Zhang, Dejian; Nagayama, Gyoko; Takata, Yasuyuki; Sefiane, Khellil; Askounis, Alexandros

    Heat Transfer Engineering   41 ( 19-20 )   1654 - 1662   2020.12

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    Authorship:Lead author  

    DOI: 10.1080/01457632.2019.1640458

Presentations

  • Liquid Film Characteristics in Vertical Annular Flow of Hfc134a Gas and Ethanol Aqueous Solution International conference

    Huacheng Zhang

    International Heat Transfer Conference 17  2023.8 

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    Event date: 2023.8

    Language:English  

    Venue:Cape Town   Country:South Africa  

    DOI: 10.1615/IHTC17.530-100

  • Measurement of Liquid Film Thickness for Annular HFC134a Gas-Liquid Ethanol Flow in the Vertical Tube

    Huacheng Zhang

    28th International Conference on Nuclear Engineering  2021.8 

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    Event date: 2021.8

    Country:Other  

    DOI: https://doi.org/10.1115/ICONE28-63488

Professional Memberships

  • 日本原子力学会

    2023.5 - Present

  • 日本伝熱学会

    2023.5 - Present

  • 日本混相流学会

    2022.5 - Present

Research Projects

  • 新規模擬流体による高温・高圧二相流の液膜挙動普遍モデルの創出

    Grant number:25K17541  2025.4 - 2027.3

    日本学術振興会 科学研究費助成事業  若手研究

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    Grant type:Scientific research funding