The chart shows the distribution of publications by all Research.com ranked scientists in the field of Engineering and Technology in 2026. The highlighted bar marks where Jian Song sits on this spectrum.
This scientist: 126 publications — 17th percentile
17% of scientists in this discipline score the same or lower.
The last bar groups every scientist with 804 publications or more.
The chart shows the D-index (discipline H-index) distribution of Engineering and Technology scientists ranked by Research.com in 2026. The highlighted bar marks where Jian Song sits on this spectrum.
This scientist: 36 D-Index — 13th percentile
13% of scientists in this discipline score the same or lower.
The last bar groups every scientist with 107 D-Index or more.
Jian Song is affiliated with the University of Birmingham in the United Kingdom and contributes to the field of engineering with a focus on various subfields such as mechanical engineering, electrical and electronic engineering, electronic, optical and magnetic materials, computational mechanics, and biomedical engineering. Their research encompasses topics related to advanced battery materials, thermodynamic and exergetic analyses of power and cooling systems, supercapacitor materials and fabrication, advanced battery materials and technologies, advanced thermodynamic systems and engines, refrigeration and air conditioning technologies, and solar thermal and photovoltaic systems.
Song has published extensively in recognized venues across their areas of expertise. Frequent publication outlets include:
The scientist's recent papers illustrate contributions particularly in the domain of thermodynamic system optimization and integration. Notable recent works by Jian Song include:
Coauthor collaborations have played a significant role in Song's publication record. Frequent coauthors include:
Their research integrates thermodynamic, exergetic, and economic perspectives to address energy conversion challenges, focusing on innovative cycle combinations such as supercritical CO2 and organic Rankine cycles. Song's works contribute to areas involving waste-heat recovery, hybrid renewable energy systems, and thermoeconomic assessments of advanced power generation technologies.
Jian Song;Yin Song;Chun-wei Gu
Jian Song;Chun-wei Gu
Jian Song;Chun-wei Gu
Jian Song;Xue-song Li;Xiao-dong Ren;Chun-wei Gu
Jian Song;Wenbo Ding;Fang Yang;Hui Yang
Jian Song;Yaxiong Wang;Yaxiong Wang;Kai Wang;Jiangfeng Wang
Jian Song;Xiaoya Li;Kai Wang;Christos N. Markides
Yong Li;Yong Li;Jian Song;Jie Yang
Unknown
Jian Song;Xue-song Li;Xiao-dong Ren;Chun-wei Gu
Jian Song;Chun-wei Gu;Xiaodong Ren
Unknown
Jian Song;Chun-wei Gu
Wei Wen;Wei Wen;Jin-Ming Wu;Yin-Zhu Jiang;Lu-Lu Lai
Jian Song;Chun-wei Gu;Xiaodong Ren
Jian Song;Yan Li;Chun-wei Gu;Li Zhang
Jian Song;Chun-wei Gu;Xue-song Li
Yongliang Zhao;Yongliang Zhao;Ming Liu;Jian Song;Chaoyang Wang
Unknown
Unknown
Yong Li;Yong Li;Jie Yang;Jian Song
Yong Li;Yong Li;Jie Yang;Jian Song
Aozheng Zhou;Jian Song;Xuesong Li;Xiaodong Ren
Yong Li;Yong Li;Jie Yang;Jian Song
Xiaoya Li;Xiaoya Li;Jian Song;Guopeng Yu;Youcai Liang
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Eindhoven University of Technology
Villanova University
Institut de Neurobiologie de la Méditerranée
Federal University of Rio de Janeiro
Kyorin University
University of Birmingham
Imperial College London
Centers for Disease Control and Prevention
Children's Hospital of Philadelphia
Hunan University
New York University
Keio University
Cedars-Sinai Medical Center
Cornell University
Goethe University Frankfurt