World's Best Scientists 2026 revealed!

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
43
Citations
5870
World Ranking
1754
National Ranking
127

Overview

Jennifer X. Wen is affiliated with the University of Surrey in the United Kingdom and works primarily in the field of Engineering. Their research focuses on several subfields, including Aerospace Engineering, Safety, Risk, Reliability and Quality, Electrical and Electronic Engineering, Computational Mechanics, and Automotive Engineering.

Their research covers a wide range of topics, including:

  • Combustion and Detonation Processes
  • Fire dynamics and safety research
  • Advanced Battery Technologies Research
  • Combustion and flame dynamics
  • Fire effects on ecosystems
  • Advanced Battery Materials and Technologies
  • Advancements in Battery Materials

Recent publications authored or co-authored by Jennifer X. Wen illustrate a focus on battery safety, fire dynamics, and thermal processes. Select recent papers include:

  • "A coupled conjugate heat transfer and CFD model for the thermal runaway evolution and jet fire of 18650 lithium-ion battery under thermal abuse" (2022, eTransportation)
  • "Revealing particle venting of lithium-ion batteries during thermal runaway: A multi-scale model toward multiphase process" (2023, eTransportation)
  • "An experimental study on thermal runaway characteristics of lithium-ion batteries with high specific energy and prediction of heat release rate" (2020, Journal of Power Sources)
  • "A Review for Solar Panel Fire Accident Prevention in Large-Scale PV Applications" (2020, IEEE Access)
  • "Statistics, lessons learned and recommendations from analysis of HIAD 2.0 database" (2022, International Journal of Hydrogen Energy)

Jennifer X. Wen frequently publishes in journals and conferences such as:

  • Proceedings of the Combustion Institute
  • International Journal of Hydrogen Energy
  • Process Safety and Environmental Protection
  • International Journal of Thermal Sciences
  • Fire Safety Journal

Frequent collaborative partners in their research include:

  • Fei Tang
  • Xiaobo Shen
  • Jonathan Ε. H. Buston
  • J. Gill
  • Daniel Howard

Best Publications

  • A novel battery thermal management system coupling with PCM and optimized controllable liquid cooling for different ambient temperatures

    Depeng Kong;Rongqi Peng;Ping Ping;Jin Du

  • Investigation on thermal management performance of PCM-fin structure for Li-ion battery module in high-temperature environment

    Ping Ping;Ping Ping;Rongqi Peng;Depeng Kong;Guoming Chen

  • Experimental and modeling analysis of thermal runaway propagation over the large format energy storage battery module with Li4Ti5O12 anode

    Peifeng Huang;Ping Ping;Ke Li;Haodong Chen

  • Revealing particle venting of lithium-ion batteries during thermal runaway: A multi-scale model toward multiphase process

    Unknown

  • Validation of FDS for the prediction of medium-scale pool fires

    Jennifer X. Wen;K. Kang;T. Donchev;J. M. Karwatzki

  • Numerical study on spontaneous ignition of pressurized hydrogen release through a length of tube

    Jennifer X. Wen;B. P. Xu;V. H. Y. Tam

  • Modelling electro-thermal response of lithium-ion batteries from normal to abuse conditions

    Ping Ping;Qingsong Wang;Yongmann M. Chung;Jennifer X. Wen

  • Experimental and analytical investigation of the turbulent burning velocity of two-component fuel mixtures of hydrogen, methane and propane

    S. P. R. Muppala;M. Nakahara;N. K. Aluri;H. Kido

  • The effect of pressure boundary rupture rate on spontaneous ignition of pressurized hydrogen release

    B. P. Xu;Jennifer X. Wen;S. Dembele;V. H. Y. Tam

  • Numerical study on the spontaneous ignition of pressurized hydrogen release through a tube into air

    B. P. Xu;L. El Hima;Jennifer X. Wen;S. Dembele

  • An experimental study on thermal runaway characteristics of lithium-ion batteries with high specific energy and prediction of heat release rate

    Haodong Chen;Jonathan E.H. Buston;Jason Gill;Daniel Howard

  • Characterization of behaviour and hazards of fire and deflagration for high-energy Li-ion cells by over-heating

    Ping Ping;Ping Ping;Depeng Kong;Jiaqing Zhang;Ruoxi Wen

  • A Review for Solar Panel Fire Accident Prevention in Large-Scale PV Applications

    Zuyu Wu;Yihua Hu;Jennifer Xiao Ling Wen;Fubao Zhou

  • Numerical study of spontaneous ignition in pressurized hydrogen release through a length of tube with local contraction

    B. P. Xu;Jennifer X. Wen

  • Statistics, lessons learned and recommendations from analysis of HIAD 2.0 database

    Unknown

  • Numerical simulation of flame acceleration and deflagration-to-detonation transition in hydrogen-air mixtures with concentration gradients

    C.J. Wang;Jennifer X. Wen

  • Flame acceleration and transition from deflagration to detonation in hydrogen explosions

    Ali Heidari;Jennifer Wen

  • Predicting radiative characteristics of hydrogen and hydrogen/methane jet fires using FireFOAM

    C. J. Wang;C. J. Wang;Jennifer X. Wen;Z. B. Chen;S. Dembele

  • Large eddy simulation of a medium-scale methanol pool fire using the extended eddy dissipation concept

    Zhibin Chen;Jennifer X. Wen;Baopeng Xu;Siaka Dembele

  • Numerical simulation of flame acceleration and deflagration to detonation transition in hydrogen-air mixture

    Ali Heidari;Jennifer X. Wen

  • Single-step chemistry model and transport coefficient model for hydrogen combustion

    ChangJian Wang;ChangJian Wang;Jennifer X. Wen;ShouXiang Lu;Jin Guo

  • The effect of tube internal geometry on the propensity to spontaneous ignition in pressurized hydrogen release

    Boyang P. Xu;Boyang P. Xu;Jennifer Xiaoling Wen

Frequent Co-Authors

Qingsong Wang
Qingsong Wang University of Science and Technology of China
Jinhua Sun
Jinhua Sun University of Science and Technology of China
K.M. Liew
K.M. Liew City University of Hong Kong
Evor L. Hines
Evor L. Hines University of Warwick
Jinyang Zheng
Jinyang Zheng Zhejiang University
Yihua Hu
Yihua Hu University of York
Darek Ceglarek
Darek Ceglarek University of Warwick
Diganta Bhusan Das
Diganta Bhusan Das Loughborough University
Dongsheng Wen
Dongsheng Wen Technical University of Munich
Alexander M. Korsunsky
Alexander M. Korsunsky University of Oxford

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