World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
42
Citations
5739
World Ranking
6709
National Ranking
1254

Overview

Pan Zhao is affiliated with Xi'an Jiaotong University in China, specializing in the field of Engineering with a strong emphasis on Mechanical Engineering. Their research spans several interdisciplinary subfields, including Renewable Energy, Sustainability and the Environment, Materials Chemistry, Electrical and Electronic Engineering, and Statistical and Nonlinear Physics.

Their work is notably concentrated on topics such as Thermodynamic and Exergetic Analyses of Power and Cooling Systems, Refrigeration and Air Conditioning Technologies, Advanced Thermodynamic Systems and Engines, Advanced Thermodynamics and Statistical Mechanics, Adsorption and Cooling Systems, Carbon Dioxide Capture Technologies, and Hybrid Renewable Energy Systems.

Pan Zhao has contributed significantly to the scientific literature with numerous research articles published in high-impact journals. Recent publications include:

  • "Preliminary design and performance assessment of compressed supercritical carbon dioxide energy storage system," 2020, Applied Thermal Engineering
  • "Components design and performance analysis of a novel compressed carbon dioxide energy storage system: A pathway towards realizability," 2020, Energy Conversion and Management
  • "A combined heating and power system based on compressed carbon dioxide energy storage with carbon capture: Exploring the technical potential," 2022, Energy Conversion and Management
  • "Performance analysis of a self-condensation compressed carbon dioxide energy storage system with vortex tube," 2021, Journal of Energy Storage
  • "Thermo-economic analysis of a combined cooling, heating and power system based on self-evaporating liquid carbon dioxide energy storage," 2022, Applied Energy

The research venues where Pan Zhao frequently publishes include:

  • Energy Conversion and Management
  • Energy
  • Applied Thermal Engineering
  • Journal of Energy Storage
  • Renewable Energy

Collaboration forms a significant part of Pan Zhao's research activity. Frequent coauthors include Jiangfeng Wang, Wenpan Xu, Yiping Dai, Juwei Lou, and Aijie Liu. These collaborations contribute to a diverse and multidisciplinary approach to research in energy storage and thermodynamic systems.

Best Publications

  • Thermodynamic analysis and optimization of a solar-driven regenerative organic Rankine cycle (ORC) based on flat-plate solar collectors

    Man Wang;Jiangfeng Wang;Yuzhu Zhao;Pan Zhao

  • Parametric analysis of a hybrid power system using organic Rankine cycle to recover waste heat from proton exchange membrane fuel cell

    Pan Zhao;Jiangfeng Wang;Lin Gao;Yiping Dai

  • Design and thermodynamic analysis of a hybrid energy storage system based on A-CAES (adiabatic compressed air energy storage) and FESS (flywheel energy storage system) for wind power application

    Pan Zhao;Yiping Dai;Jiangfeng Wang

  • Multi-objective optimization of a combined cooling, heating and power system driven by solar energy

    Man Wang;Jiangfeng Wang;Pan Zhao;Yiping Dai

  • Performance analysis of a novel energy storage system based on liquid carbon dioxide

    Mingkun Wang;Pan Zhao;Yi Wu;Yiping Dai

  • Parametric analysis of a new combined cooling, heating and power system with transcritical CO2 driven by solar energy

    Jiangfeng Wang;Pan Zhao;Xiaoqiang Niu;Yiping Dai

  • Energy efficiency analysis and off-design analysis of two different discharge modes for compressed air energy storage system using axial turbines

    Pan Zhao;Lin Gao;Jiangfeng Wang;Yiping Dai

  • Thermodynamic analysis of an SOFC–GT–ORC integrated power system with liquefied natural gas as heat sink

    Zhequan Yan;Pan Zhao;Jiangfeng Wang;Yiping Dai

  • Off-design performance analysis of a solar-powered organic Rankine cycle

    Jiangfeng Wang;Zhequan Yan;Pan Zhao;Yiping Dai

  • Thermodynamic analysis and optimization of a transcritical CO2 geothermal power generation system based on the cold energy utilization of LNG

    Jianyong Wang;Jiangfeng Wang;Yiping Dai;Pan Zhao

  • Performance evaluation and accuracy enhancement of a day-ahead wind power forecasting system in China

    Pan Zhao;Jiangfeng Wang;Junrong Xia;Yiping Dai

  • Thermodynamic analysis and optimization of a flash-binary geothermal power generation system

    Jianyong Wang;Jiangfeng Wang;Yiping Dai;Pan Zhao

  • Thermodynamic analysis of a new combined cooling and power system using ammonia–water mixture

    Jiangfeng Wang;Jianyong Wang;Pan Zhao;Yiping Dai

  • Capacity allocation of a hybrid energy storage system for power system peak shaving at high wind power penetration level

    Pan Zhao;Jiangfeng Wang;Yiping Dai

  • Thermodynamic analysis of an integrated energy system based on compressed air energy storage (CAES) system and Kalina cycle

    Pan Zhao;Jiangfeng Wang;Yiping Dai

  • Preliminary design and performance assessment of compressed supercritical carbon dioxide energy storage system

    Mengjuan Xu;Xu Wang;Zihua Wang;Pan Zhao

  • Thermodynamic analysis of a Kalina-based combined cooling and power cycle driven by low-grade heat source

    Liyan Cao;Jiangfeng Wang;Hongyang Wang;Pan Zhao

  • Thermodynamic analysis of a novel liquid carbon dioxide energy storage system and comparison to a liquid air energy storage system

    Mengjuan Xu;Pan Zhao;Yaowu Huo;Jianming Han

  • A combined heating and power system based on compressed carbon dioxide energy storage with carbon capture: Exploring the technical potential

    Unknown

  • Components design and performance analysis of a novel compressed carbon dioxide energy storage system: A pathway towards realizability

    Pan Zhao;Wenpan Xu;Shiqiang Zhang;Feifei Gou

  • A preliminary dynamic behaviors analysis of a hybrid energy storage system based on adiabatic compressed air energy storage and flywheel energy storage system for wind power application

    Pan Zhao;Mingkun Wang;Jiangfeng Wang;Yiping Dai

  • Thermo-economic analysis and comparative study of transcritical power cycles using CO2-based mixtures as working fluids

    Jiaxi Xia;Jiangfeng Wang;Gang Zhang;Juwei Lou

Frequent Co-Authors

Yiping Dai
Yiping Dai Xi'an Jiaotong University
Jiangfeng Wang
Jiangfeng Wang Xi'an Jiaotong University

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