个人简介 | 工作经历: (1) 2023-12 至 今, 宁波大学, 海运学院, 副教授 (2) 2021-01 至 2023-11, 宁波大学, 海运学院, 讲师 (3) 2015-07 至 2017-05, 中船重工武汉船用机械有限责任公司, 技术中心, 工程师 教育经历: (1) 2017-09 至 2020-12, 武汉理工大学, 车辆工程, 博士 (2) 2019-10 至 2020-09, 卡尔斯鲁厄理工大学, 新能源电池, 国家公派联培博士 (3) 2012-09 至 2015-06, 中国石油大学(华东), 机械设计及理论, 硕士 (4) 2008-09 至 2012-06, 中国石油大学(华东), 车辆工程, 学士 |
研究成果 | 近5年在 《Journal of Power Sources》、《International Journal of Heat and Mass Transfer》、《Applied Energy》、《Energy Conversion and Management》、《International Journal of Hydrogen Energy》和《Journal of Electrochemical Society》等知名SCI期刊发表论文30多篇 [1] Xiao L, Luo M, Zhang H, Zeis R, Sui P-C. Solid Mechanics Simulation of Reconstructed Gas Diffusion Layers for PEMFCs. Journal of The Electrochemical Society. 2019;166:F377-F85. [2] Zhang H, Xiao L, Chuang P-YA, Djilali N, Sui P-C. Coupled stress–strain and transport in proton exchange membrane fuel cell with metallic bipolar plates. Applied Energy. 2019;251:113316. [3] Xiao L, Luo M, Zhu L, Duan K, Bevilacqua N, Eifert L, et al. Pore-Scale Characterization and Simulation of Porous Electrode Material for Vanadium Redox Flow Battery: Effects of Compression on Transport Properties. Journal of the Electrochemical Society. 2020;167:110545-54. [4] 肖柳胜, 罗马吉, 朱礼军, 段康俊, 冷文亮, Zeis R, et al. 重构全钒液流电池碳毡力学仿真及孔尺度模拟. 重庆大学学报. 2020;43:1-10. [5] Duan K, Zhu L, Li M, Xiao L, Bevilacqua N, Eifert L, et al. Multiphase and Pore Scale Modeling on Catalyst Layer of High-Temperature Polymer Electrolyte Membrane Fuel Cell. Journal of The Electrochemical Society. 2021;168. [6] Zhu L, Yang W, Xiao L, Zhang H, Gao X, Sui P-C. Stochastically Modeled Gas Diffusion Layers: Effects of Binder and Polytetrafluoroethylene on Effective Gas Diffusivity. Journal of the Electrochemical Society. 2021;168:014514. [7] Zhu L, Zhang H, Xiao L, Bazylak A, Gao X, Sui P-C. Pore-scale modeling of gas diffusion layers: Effects of compression on transport properties. Journal of Power Sources. 2021;496. [8] Xiao L, Bian M, Yin Z, Wen X, Zhao C, Sui P-C, et al. Combined effects of microstructural characteristics on anisotropic transport properties of gas diffusion layers for PEMFCs. International Journal of Hydrogen Energy. 2022;47:37978-89. [9] Xiao L, Bian M, Zhu L, Duan K, Leng W, Zeis R, et al. High-density and low-density gas diffusion layers for proton exchange membrane fuel cells: Comparison of mechanical and transport properties. International Journal of Hydrogen Energy. 2022;47:22532-44. [10] Xiao L, Yin Z, Bian M, Bevilacqua N, Zeis R, Yuan J, et al. Microstructure reconstruction using fiber tracking technique and pore-scale simulations of heterogeneous gas diffusion layer. International Journal of Hydrogen Energy. 2022;47:20218-31. [11] Xiao L, Zhu L, Clökler C, Grünzweig A, Wilhelm F, Scholta J, et al. Experimental validation of pore-scale models for gas diffusion layers. Journal of Power Sources. 2022;536:231515. [12] Xiaofei W, Yang Q, Zhigang Z, Liusheng X. Investigation of Ship Vibration Effects on the Gas Distribution and Output Voltage of a Proton Exchange Membrane Fuel Cell. ACS Omega. 2022;7:20569-83. [13] Xu J, Zhu L, Xiao L, Hu H, Yin Z, Zhang R, et al. A multiscale study on the effect of compression on lithium-ion battery separators. Journal of Energy Storage. 2022;54. [14] Yang W, Zhu L, Wang S, Yin Z, Xiao L, Shao Q, et al. Investigation of fabrication of gas diffusion substrate for proton exchange membrane fuel cells. International Journal of Hydrogen Energy. 2022;47:35423-36. [15] 刘郭存, 张恒, 肖柳胜, 隋邦傑. 压缩对质子交换膜燃料电池传输特性的影响. 数字制造科学. 2019;17:266-70. [16] Li J, Lai C, Zhang H, Xiao L, Zhao J, Wang F, et al. A combined phosphoric acid fuel cell and direct contact membrane distillation hybrid system for electricity generation and seawater desalination. Energy Conversion and Management. 2022;267. [17] Zheng J, Xiao L, Wu M, Lang S, Zhang Z, Chen M, et al. Numerical Analysis of Thermal Stress for a Stack of Planar Solid Oxide Fuel Cells. Energies. 2022;15. [18] Liusheng Xiao; Miaoqi Bian; Yushuai Sun; Jinliang Yuan; Xiaofei Wen ; Transport properties evaluation of pore-scale GDLs for PEMFC using orthogonal design method, Applied Energy, 2024, 357: 122445
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