World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
35
Citations
3923
World Ranking
9073
National Ranking
1522

Overview

Jiangfeng Guo is affiliated with Beijing University of Chemical Technology in China, contributing extensively to the field of engineering with a specialized focus on mechanical engineering and related subfields. Their research output encompasses over 100 publications primarily in engineering disciplines, with notable work in areas including mechanical engineering, computational mechanics, biomedical engineering, civil and structural engineering, and mechanics of materials.

The scientist's work covers several main research topics, prominently featuring heat transfer and supercritical fluids, heat transfer and optimization, phase equilibria and thermodynamics, combustion and flame dynamics, heat transfer mechanisms, thermodynamic and exergetic analyses of power and cooling systems, as well as thermal radiation and cooling technologies. These areas highlight a strong emphasis on thermal sciences and energy systems.

Jiangfeng Guo frequently publishes in several academic journals, with the most prolific venues being:

  • Applied Thermal Engineering
  • International Journal of Heat and Mass Transfer
  • Energy
  • Physicochemical Problems of Mineral Processing
  • SSRN Electronic Journal

Among recent papers, several contributions stand out for their focus on thermal-hydraulic characteristics and supercritical CO2 systems:

  • Experimental investigation of thermal-hydraulic characteristics of a printed circuit heat exchanger used as a pre-cooler for the supercritical CO2 Brayton cycle, 2020, Applied Thermal Engineering
  • Experimental and numerical investigations of thermal-hydraulic characteristics in a novel airfoil fin heat exchanger, 2021, International Journal of Heat and Mass Transfer
  • Heat transfer performance of supercritical pressure CO2 in a non-uniformly heated horizontal tube, 2020, International Journal of Heat and Mass Transfer
  • Experimental and numerical studies on novel airfoil fins heat exchanger in flue gas heat recovery system, 2021, Applied Thermal Engineering
  • Theoretical analysis of a novel PCHE with enhanced rib structures for high-power supercritical CO2 Brayton cycle system based on solar energy, 2023, Energy

Jiangfeng Guo collaborates frequently with several researchers within the thermal and mechanical engineering domain. Their most frequent co-authors include:

  • Keyong Cheng
  • Xiulan Huai
  • Zengxiao Han
  • Haiyan Zhang
  • Junlin Chen

This combination of active collaboration and diversified publications in reputable journals demonstrates Jiangfeng Guo's sustained involvement in advancing understanding and technology in heat transfer systems, supercritical fluid mechanics, and thermal optimization.

Best Publications

  • Numerical study on novel airfoil fins for printed circuit heat exchanger using supercritical CO2

    Xinying Cui;Jiangfeng Guo;Xiulan Huai;Keyong Cheng

  • Optimization design of shell-and-tube heat exchanger by entropy generation minimization and genetic algorithm

    Jiangfeng Guo;Lin Cheng;Mingtian Xu

  • The application of field synergy number in shell-and-tube heat exchanger optimization design

    Jiangfeng Guo;Mingtian Xu;Lin Cheng

  • Entransy dissipation number and its application to heat exchanger performance evaluation

    JiangFeng Guo;Lin Cheng;MingTian Xu

  • Thermal analysis of supercritical pressure CO2 in horizontal tubes under cooling condition

    Mengru Xiang;Jiangfeng Guo;Xiulan Huai;Xinying Cui

  • Design analysis of supercritical carbon dioxide recuperator

    Jiangfeng Guo

  • The Application of Entransy Dissipation Theory in Optimization Design of Heat Exchanger

    Jiangfeng Guo;Mingtian Xu

  • Experimental investigation of thermal-hydraulic characteristics of a printed circuit heat exchanger used as a pre-cooler for the supercritical CO2 Brayton cycle

    Keyong Cheng;Jingzhi Zhou;Huzhong Zhang;Xiulan Huai

  • Studies on the thermal-hydraulic performance of zigzag channel with supercritical pressure CO2

    Haiyan Zhang;Jiangfeng Guo;Xiulan Huai;Keyong Cheng

  • The application of entransy dissipation theory in optimization design of heat exchanger

    Unknown

  • Thermal-hydraulic characteristics of supercritical pressure CO2 in vertical tubes under cooling and heating conditions

    Jiangfeng Guo;Mengru Xiang;Haiyan Zhang;Xiulan Huai

  • Thermodynamic analysis of waste heat power generation system

    Jiangfeng Guo;Mingtian Xu;Lin Cheng

  • Performance investigation of parabolic trough solar receiver

    Jiangfeng Guo;Xiulan Huai;Zhigang Liu

  • Principle of equipartition of entransy dissipation for heat exchanger design

    JiangFeng Guo;MingTian Xu;Lin Cheng

  • Buoyancy effects on coupled heat transfer of supercritical pressure CO2 in horizontal semicircular channels

    Haiyan Zhang;Jiangfeng Guo;Xiulan Huai;Xinying Cui

  • Numerical investigations on serpentine channel for supercritical CO2 recuperator

    Xinying Cui;Jiangfeng Guo;Xiulan Huai;Haiyan Zhang

  • Second law analysis of curved rectangular channels

    Jiangfeng Guo;Jiangfeng Guo;Mingtian Xu;Lin Cheng

  • Experimental and numerical investigations of thermal-hydraulic characteristics in a novel airfoil fin heat exchanger

    Haiyan Zhang;Jiangfeng Guo;Xinying Cui;Jingzhi Zhou

  • Numerical investigation of helically coiled tube from the viewpoint of field synergy principle

    Jiangfeng Guo;Xiulan Huai

  • Thermal wave interference as the origin of the overshooting phenomenon in dual-phase-lagging heat conduction

    Mingtian Xu;Jiangfeng Guo;Liqiu Wang;Lin Cheng

  • Numerical investigations of circular tube fitted with helical screw-tape inserts from the viewpoint of field synergy principle

    Jiangfeng Guo;Mingtian Xu;Lin Cheng

  • Multi-Objective Optimization of Heat Exchanger Design by Entropy Generation Minimization

    Jiangfeng Guo;Lin Cheng;Mingtian Xu

  • Viscous dissipation effect on entropy generation in curved square microchannels

    Jiangfeng Guo;Mingtian Xu;Jun Cai;Xiulan Huai

  • Performance Analysis of Printed Circuit Heat Exchanger for Supercritical Carbon Dioxide

    Jiangfeng Guo;Xiulan Huai

Frequent Co-Authors

Xiulan Huai
Xiulan Huai Institute of Engineering Thermophysics
Min Xu
Min Xu University of Technology Sydney
Liqiu Wang
Liqiu Wang University of Hong Kong

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