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D-Index & Metrics

Engineering and Technology

D-Index
65
Citations
14417
World Ranking
1543
National Ranking
300

Overview

Gequn Shu is affiliated with Tianjin University in China and has a research portfolio primarily in engineering, with an emphasis on mechanical engineering. Their scholarly output comprises 138 publications in the broader field of engineering, including notable contributions to mechanical engineering, fluid flow and transfer processes, materials chemistry, computational mechanics, and electrical and electronic engineering.

Their research spans various specialized topics, notably:

  • Thermodynamic and Exergetic Analyses of Power and Cooling Systems
  • Advanced Combustion Engine Technologies
  • Refrigeration and Air Conditioning Technologies
  • Combustion and flame dynamics
  • Advanced Thermodynamic Systems and Engines
  • Advanced Thermoelectric Materials and Devices
  • Catalytic Processes in Materials Science

Frequent coauthors in their work include Hua Tian (35 joint publications), Jiaying Pan (18), Haiqiao Wei (18), Xuan Wang (14), and Lingfeng Shi (13), indicating ongoing collaborative research efforts.

Publication venues where Gequn Shu frequently contributes include:

  • Energy Conversion and Management (7 publications)
  • Energy (7 publications)
  • SSRN Electronic Journal (6 publications)
  • Fuel (4 publications)
  • Physics of Fluids (4 publications)

Recent papers authored or coauthored by Gequn Shu cover several areas related to combustion, energy storage, heat recovery, and sustainable energy technologies. Selected recent publications are:

  • "Ammonia and hydrogen blending effects on combustion stabilities in optical SI engines," 2023, Energy Conversion and Management
  • "Challenges and opportunities of Rankine cycle for waste heat recovery from internal combustion engine," 2021, Progress in Energy and Combustion Science
  • "Carnot battery system integrated with low-grade waste heat recovery: Toward high energy storage efficiency," 2022, Journal of Energy Storage
  • "On combustion and emission characteristics of ammonia/hydrogen engines: Emphasis on energy ratio and equivalence ratio," 2024, Fuel
  • "Progress and prospects for low-grade heat recovery electrochemical technologies," 2021, Sustainable Energy Technologies and Assessments

Best Publications

  • Gasoline engine exhaust gas recirculation – A review

    Haiqiao Wei;Tianyu Zhu;Gequn Shu;Linlin Tan

  • A review of researches on thermal exhaust heat recovery with Rankine cycle

    Tianyou Wang;Yajun Zhang;Zhijun Peng;Gequn Shu

  • A review of waste heat recovery on two-stroke IC engine aboard ships

    Gequn Shu;Youcai Liang;Haiqiao Wei;Hua Tian

  • Simulation and thermodynamic analysis of a bottoming Organic Rankine Cycle (ORC) of diesel engine (DE)

    Guopeng Yu;Gequn Shu;Hua Tian;Haiqiao Wei

  • Fluids and parameters optimization for the organic Rankine cycles (ORCs) used in exhaust heat recovery of Internal Combustion Engine (ICE)

    Hua Tian;Gequn Shu;Haiqiao Wei;Xingyu Liang

  • Alkanes as working fluids for high-temperature exhaust heat recovery of diesel engine using organic Rankine cycle

    Gequn Shu;Xiaoning Li;Hua Tian;Xingyu Liang

  • A review of modified Organic Rankine cycles (ORCs) for internal combustion engine waste heat recovery (ICE-WHR)

    Lingfeng Shi;Gequn Shu;Hua Tian;Shuai Deng

  • Parametric and working fluid analysis of a dual-loop organic Rankine cycle (DORC) used in engine waste heat recovery

    Gequn Shu;Lina Liu;Hua Tian;Haiqiao Wei

  • Combustion and particle number emissions of a direct injection spark ignition engine operating on ethanol/gasoline and n-butanol/gasoline blends with exhaust gas recirculation

    Zhijin Zhang;Tianyou Wang;Ming Jia;Qun Wei

  • Ammonia and hydrogen blending effects on combustion stabilities in optical SI engines

    Unknown

  • Parametric and exergetic analysis of waste heat recovery system based on thermoelectric generator and organic rankine cycle utilizing R123

    Gequn Shu;Jian Zhao;Hua Tian;Xingyu Liang

  • Study of mixtures based on hydrocarbons used in ORC (Organic Rankine Cycle) for engine waste heat recovery

    Gequn Shu;Yuanyuan Gao;Hua Tian;Haiqiao Wei

  • Investigation and design optimization of exhaust-based thermoelectric generator system for internal combustion engine

    Zhiqiang Niu;Hai Diao;Shuhai Yu;Kui Jiao

  • Thermo-economic analysis of zeotropic mixtures based on siloxanes for engine waste heat recovery using a dual-loop organic Rankine cycle (DORC)

    Hua Tian;Liwen Chang;Yuanyuan Gao;Gequn Shu

  • Comparison and parameter optimization of a two-stage thermoelectric generator using high temperature exhaust of internal combustion engine

    Xingyu Liang;Xiuxiu Sun;Hua Tian;Gequn Shu

  • The role of low temperature chemistry in combustion mode development under elevated pressures

    Jiaying Pan;Haiqiao Wei;Gequn Shu;Zheng Chen

  • Performance comparison and working fluid analysis of subcritical and transcritical dual-loop organic Rankine cycle (DORC) used in engine waste heat recovery

    Gequn Shu;Lina Liu;Hua Tian;Haiqiao Wei

  • Effect of oxygen enriched combustion and water-diesel emulsion on the performance and emissions of turbocharged diesel engine

    Youcai Liang;Gequn Shu;Haiqiao Wei;Wei Zhang

  • An improved CO2-based transcritical Rankine cycle (CTRC) used for engine waste heat recovery

    Gequn Shu;Lingfeng Shi;Hua Tian;Xiaoya Li

  • Multi-approach evaluations of a cascade-Organic Rankine Cycle (C-ORC) system driven by diesel engine waste heat: Part A – Thermodynamic evaluations

    Gequn Shu;Guopeng Yu;Hua Tian;Haiqiao Wei

  • Experimental investigations on a cascaded steam-/organic-Rankine-cycle (RC/ORC) system for waste heat recovery (WHR) from diesel engine

    Guopeng Yu;Gequn Shu;Hua Tian;Yongzhan Huo

Frequent Co-Authors

Hua Tian
Hua Tian Tianjin University
Haiqiao Wei
Haiqiao Wei Tianjin University
Xingyu Liang
Xingyu Liang University of New South Wales
Qing Du
Qing Du Tianjin University
Kui Jiao
Kui Jiao Tianjin University
Tianyou Wang
Tianyou Wang Tianjin University
Christos N. Markides
Christos N. Markides Imperial College London
Zheng Chen
Zheng Chen Peking University
Shuai Deng
Shuai Deng Tianjin University
Ming Jia
Ming Jia Dalian University of Technology

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