World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
61
Citations
12636
World Ranking
2062
National Ranking
420

Overview

Yiping Dai is affiliated with Xi'an Jiaotong University in China and has contributed extensively to the field of engineering, particularly focusing on mechanical engineering and related subfields. Their research output totals 128 publications across engineering, with notable emphasis on mechanical engineering (82 publications), statistical and nonlinear physics (14 publications), aerospace engineering (12 publications), biomedical engineering (8 publications), and renewable energy, sustainability, and the environment (6 publications).

The primary topics within their body of work include thermodynamic and exergetic analyses of power and cooling systems, refrigeration and air conditioning technologies, advanced thermodynamics and statistical mechanics, advanced thermodynamic systems and engines, adsorption and cooling systems, phase equilibria and thermodynamics, and hybrid renewable energy systems.

Yiping Dai has coauthored many publications with several frequent collaborators, including:

  • Pan Zhao
  • Jiangfeng Wang
  • Gang Fan
  • Yang Du
  • Kang Chen

The scientist's recent papers reflect ongoing research interests and include the following works:

  • "Preliminary design and performance assessment of compressed supercritical carbon dioxide energy storage system," 2020, Applied Thermal Engineering
  • "Gas-Mediated Tumor Energy Remodeling for Sensitizing Mild Photothermal Therapy," 2023, Angewandte Chemie International Edition
  • "A comprehensive investigation on the design and off-design performance of supercritical carbon dioxide power system based on the small-scale lead-cooled fast reactor," 2020, Journal of Cleaner Production
  • "Components design and performance analysis of a novel compressed carbon dioxide energy storage system: A pathway towards realizability," 2020, Energy Conversion and Management
  • "Thermo-economic optimization and part-load analysis of the combined supercritical CO2 and Kalina cycle," 2021, Energy Conversion and Management

Yiping Dai's work has been published frequently in a core set of journals and publication venues, which include:

  • Energy Conversion and Management (13 publications)
  • Energy (8 publications)
  • Applied Thermal Engineering (4 publications)
  • SSRN Electronic Journal (4 publications)
  • Ocean Engineering (3 publications)

Best Publications

  • Parametric optimization and comparative study of organic Rankine cycle (ORC) for low grade waste heat recovery

    Yiping Dai;Jiangfeng Wang;Lin Gao

  • Exergy analyses and parametric optimizations for different cogeneration power plants in cement industry

    Jiangfeng Wang;Yiping Dai;Lin Gao

  • Exergy analysis, parametric analysis and optimization for a novel combined power and ejector refrigeration cycle

    Yiping Dai;Jiangfeng Wang;Lin Gao

  • Exergoeconomic analysis of utilizing the transcritical CO2 cycle and the ORC for a recompression supercritical CO2 cycle waste heat recovery: A comparative study

    Xurong Wang;Yiping Dai

  • Thermodynamic analysis and optimization of an (organic Rankine cycle) ORC using low grade heat source

    Jiangfeng Wang;Zhequan Yan;Man Wang;Shaolin Ma

  • 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

  • Multi-objective optimization of an organic Rankine cycle (ORC) for low grade waste heat recovery using evolutionary algorithm

    Jiangfeng Wang;Zhequan Yan;Man Wang;Maoqing Li

  • Parametric optimization design for supercritical CO2 power cycle using genetic algorithm and artificial neural network

    Jiangfeng Wang;Zhixin Sun;Yiping Dai;Shaolin Ma

  • 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

  • Thermodynamic analysis of a transcritical CO2 power cycle driven by solar energy with liquified natural gas as its heat sink

    Yuhui Song;Jiangfeng Wang;Yiping Dai;Enmin Zhou

  • 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

  • Parametric analysis and optimization for a combined power and refrigeration cycle

    Jiangfeng Wang;Yiping Dai;Lin Gao

  • A theoretical study on a novel combined power and ejector refrigeration cycle

    Jiangfeng Wang;Yiping Dai;Zhixin Sun

  • 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

  • A new combined cooling, heating and power system driven by solar energy

    Jiangfeng Wang;Yiping Dai;Lin Gao;Shaolin Ma

  • 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

  • Parametric analysis for a new combined power and ejector–absorption refrigeration cycle

    Jiangfeng Wang;Yiping Dai;Taiyong Zhang;Shaolin Ma

Frequent Co-Authors

Jiangfeng Wang
Jiangfeng Wang Xi'an Jiaotong University
Pan Zhao
Pan Zhao Xi'an Jiaotong University
Zhiqiang Guan
Zhiqiang Guan University of Queensland

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