World's Best Scientists 2026 revealed!

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
38
Citations
5050
World Ranking
2299
National Ranking
278

Overview

Daotong Chong is a researcher affiliated with Xi'an Jiaotong University in China, primarily working within the field of Engineering. Their scholarly contributions cover a diverse range of topics and subfields, reflecting a multidisciplinary approach to engineering challenges.

The scientist's research prominently focuses on areas including Nuclear Engineering Thermal-Hydraulics, Combustion and Detonation Processes, and Nuclear Reactor Physics and Engineering. Other significant topics in their work encompass Refrigeration and Air Conditioning Technologies, Thermodynamic and Exergetic Analyses of Power and Cooling Systems, Solar Thermal and Photovoltaic Systems, and Heat Transfer and Supercritical Fluids.

Within Engineering, Chong has contributed across various subfields such as Aerospace Engineering, Mechanical Engineering, Electrical and Electronic Engineering, Computational Mechanics, and Materials Chemistry. These fields highlight their engagement with both theoretical and applied engineering problems.

Daotong Chong has a substantial publication record, with frequent appearances in key journals and venues including:

  • SSRN Electronic Journal
  • International Journal of Heat and Mass Transfer
  • Energy
  • Applied Thermal Engineering
  • Progress in Nuclear Energy

Collaborations form an integral part of their research contributions. Frequent coauthors include Junjie Yan, Weixiong Chen, Quanbin Zhao, Jinshi Wang, and Hui Yan, reflecting ongoing partnerships in advancing engineering science.

Notable recent publications by Daotong Chong include:

  • Oxygen vacancies in actiniae-like Nb2O5/Nb2C MXene heterojunction boosting visible light photocatalytic NO removal, 2021, Applied Catalysis B: Environmental
  • Multifunctional Filler-Free PEDOT:PSS Hydrogels with Ultrahigh Electrical Conductivity Induced by Lewis-Acid-Promoted Ion Exchange, 2023, Advanced Materials
  • Acid enhanced zipping effect to densify MWCNT packing for multifunctional MWCNT films with ultra-high electrical conductivity, 2023, Nature Communications
  • Flexibility and efficiency enhancement for double-reheat coal-fired power plants by control optimization considering boiler heat storage, 2020, Energy
  • Performance analysis of a solar-aided coal-fired power plant in off-design working conditions and dynamic process, 2020, Energy Conversion and Management

Best Publications

  • Improving operational flexibility by regulating extraction steam of high-pressure heaters on a 660 MW supercritical coal-fired power plant: A dynamic simulation

    Yongliang Zhao;Chaoyang Wang;Ming Liu;Daotong Chong

  • A 1D model to predict ejector performance at critical and sub-critical operational regimes.

    WeiXiong Chen;WeiXiong Chen;Ming Liu;DaoTong Chong;JunJie Yan

  • Theoretical analysis of ejector refrigeration system performance under overall modes

    Weixiong Chen;Chaoyin Shi;Shuangping Zhang;Huiqiang Chen

  • Peak shaving operational optimization of supercritical coal-fired power plants by revising control strategy for water-fuel ratio

    Chaoyang Wang;Yongliang Zhao;Ming Liu;Yongqiang Qiao

  • Increasing operational flexibility of supercritical coal-fired power plants by regulating thermal system configuration during transient processes

    Yongliang Zhao;Ming Liu;Chaoyang Wang;Xin Li

  • Advances in fabricating double-emulsion droplets and their biomedical applications

    DaoTong Chong;XinShi Liu;HuaJie Ma;GuoYou Huang

  • Experimental study on sonic steam jet condensation in quiescent subcooled water

    Xin-Zhuang Wu;Jun-Jie Yan;Wen-Jun Li;Dong-Dong Pan

  • Experimental and numerical analysis of supersonic air ejector

    Daotong Chong;Mengqi Hu;Weixiong Chen;Jinshi Wang

  • Thermodynamic analysis of pre-drying methods for pre-dried lignite-fired power plant

    Ming Liu;JunJie Yan;DaoTong Chong;JiPing Liu

  • Experimental investigation on pressure oscillations caused by direct contact condensation of sonic steam jet

    Binbin Qiu;Si Tang;Junjie Yan;Jiping Liu

  • Exergy analysis of the regulating measures of operational flexibility in supercritical coal-fired power plants during transient processes

    Yongliang Zhao;Ming Liu;Chaoyang Wang;Zhu Wang

  • Experimental investigation on the phenomenon of steam condensation induced water hammer in a horizontal pipe

    Lutao Wang;Xiaoyu Yue;Daotong Chong;Weixiong Chen

  • Theoretical Study and Case Analysis for a Predried Lignite-Fired Power System

    Ming Liu;Junjie Yan;Bofeng Bai;Daotong Chong

  • Numerical investigation of the condensation oscillation mechanism of submerged steam jet with high mass flux

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  • The numerical analysis of the effect of geometrical factors on natural gas ejector performance

    WeiXiong Chen;DaoTong Chong;JunJie Yan;JiPing Liu

  • Experimental investigation on the second dominant frequency of pressure oscillation for sonic steam jet in subcooled water

    Binbin Qiu;Junjie Yan;Jiping Liu;Daotong Chong

  • Research on the steam jet length with different nozzle structures

    Daotong Chong;Quanbin Zhao;Fang Yuan;Wei Wang

  • Flexibility and efficiency enhancement for double-reheat coal-fired power plants by control optimization considering boiler heat storage

    Zhu Wang;Ming Liu;Yongliang Zhao;Chaoyang Wang

  • Study on steam-carrying effect in static flash evaporation

    Dan Zhang;Daotong Chong;Junjie Yan;Yousen Zhang

  • Structural optimization and experimental investigation of supersonic ejectors for boosting low pressure natural gas

    DaoTong Chong;JunJie Yan;GeSheng Wu;JiPing Liu

  • Experimental and theoretical study on the second dominant frequency in submerged steam jet condensation

    Daotong Chong;Quanbin Zhao;Fang Yuan;Yuelei Cong

  • Dynamic modeling and operation optimization for the cold end system of thermal power plants during transient processes

    Chaoyang Wang;Ming Liu;Yongliang Zhao;Yongqiang Qiao

  • Experimental investigation on the condensation patterns and pressure oscillation characteristics of steam submerged jet through a horizontal pipe at low steam mass flux

    Daotong Chong;Xiaoyu Yue;Lutao Wang;Quanbin Zhao

  • Experimental investigation on the condensation regime and pressure oscillation characteristics of vertical upward steam jet condensation with low mass flux

    Qingchuan Yang;Binbin Qiu;Weixiong Chen;Daotong Chong

  • Pressure oscillation of submerged steam condensation in condensation oscillation regime

    Fang Yuan;Daotong Chong;Quanbin Zhao;Weixiong Chen

  • Numerical optimization on the geometrical factors of natural gas ejectors

    WeiXiong Chen;DaoTong Chong;JunJie Yan;JiPing Liu

  • A 1D model to predict ejector performance at critical and sub-critical operational regimesModèle unidimensionnel utilisé pour prévoir la performance d'un éjecteur sous des conditions de fonctionnement critiques et sous-critiques

    Weixiong Chen;Ming Liu;DaoTong Chong;JunJie Yan

Frequent Co-Authors

Junjie Yan
Junjie Yan Xi'an Jiaotong University
Takashi Hibiki
Takashi Hibiki City University of Hong Kong
Feng Xu
Feng Xu Xi'an Jiaotong University
Bofeng Bai
Bofeng Bai Xi'an Jiaotong University
Yoshiaki Oka
Yoshiaki Oka University of Tokyo

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