个人信息

 

 

张卓

西安交通大学 能源与动力工程学院
博士,助理教授

博士后创新人才支持计划

西安交通大学青年优秀人才支持计划

ORCID:0000-0003-0750-2428

Scops ID:57202848708

研究团队

团队负责人:陶文铨

团队介绍:http://nht.xjtu.edu.cn

热流科学与工程教育部重点实验室

陕西省氢燃料电池性能提升协同创新中心

个人荣誉

·2025年 第 10 届亚洲计算流动与传热最佳报告

·2025年 第10届全国氢能博士生论坛优秀口头汇报

·2024年 博士后创新人才支持计划

·2023年  西安交通大学能源与动力工程学院学术引领之星

·2022年 第 5 届能源,电气和电力工程国际会议最佳报告

·2021年 第 8 届亚洲计算流动与传热最佳论文

联系方式

站点计数器

教育经历

2014年9月至2018年6月 西安交通大学 能源与动力工程专业,获工学学士学位

2018年9月至2023年12月 西安交通大学 动力工程及工程热物理专业,获博士学位(导师陶文铨院士

2024年1月 任西安交通大学热流科学与工程系助理教授,入选西安交通大学青年优秀人才支持计划

科研项目

No entries were found.
Project number Project name Project origin Start time Roles Project kind
52506103 国家自然科学基金青年基金 国家自然科学基金项目 2026-01~2028-12 Leader Vertical project
2025M770627 人社部博士后面上基金 人社部博管办 2025-07~2027-07 Leader Vertical project
BX20240285 博士后创新人才支持计划 人社部博管办 2024-07~2026-07 Leader Vertical project

研究领域

  1. 燃料电池微/宏观两相流动模拟
  2. 耦合力学效应的燃料电池多场性能预测模型开发
  3. 物理信息神经网络在CFD中的应用
  4. 含氢能源与动力系统的控制策略与能量管理研究
  5. 机-电-液耦合的系统仿真软件研发

发表文章

2025

2024

  • Zhang Z, Cai SJ, Li ZD, Tao WQ*. Electrical and thermal performance analysis of PEMFC with coolant flow field under steady-state condition[J]. Energy, 2024, 306: 132288.
  • Zhang Z, Li ZD, Lin WY, Chen JY, Tao WQ*. Effect of Cooling Flow Channels on the In-plane Temperature Distribution in PEMFC[C].Advances in Computational Heat and Mass Transfer,Cham: Springer International Publishing, 2024: 644-654. (DOI: 10.1007/978-3-031-67241-5_58)
  • Tang Z, Chen L, Zhang Z, Tao WQ*. Heat Transfer and Laminar Flow Characteristics and Correlations of Single-Phase Wavy Microchannel[C].Advances in Computational Heat and Mass Transfer,Cham: Springer Nature Switzerland, 2024: 298-307. (DOI: /10.1007/978-3-031-66609-4_28)

2023

  • Zhang Z, Wang QY, Bai F, Chen L, Tao WQ*. Performance simulation and key parameters in-plane distribution analysis of a commercial-size PEMFC[J]. Energy. 2023;263: 125897.
  • Zhang Z, Bai F, He P, Li ZX, Tao WQ*. A novel cathode flow field for PEMFC and its performance analysis[J]. International Journal of Hydrogen Energy, 2023, 48 (63): 24459-24480.
  • Zhang Z, Tao WQ*. Effect of assembly pressure on the performance of proton exchange membrane fuel cell[J]. Energy Storage and Saving, 2023, 2 (1): 359-369.
  • 张卓, 丁昊, 尹仁杰, 冯相友,陶文铨*. 不同环境风速下建筑外空调室外机热环境分析[J]. 工程热物理学报. 44. 2023. 436-443.
  • Dai YJ, Shi JW, Cheng XL, Zhang Z, He YQ, Tao WQ*. Numerical study on the cavitation flow characteristics of high-pressure fuel in injector orifices based on compressible non-isothermal model[J]. AIP Advances, 2023, 13 (11): 115205.
  • Li ZX, Bai F, He P, Zhang Z, Tao WQ*. Three-dimensional performance simulation of PEMFC of metal foam flow plate reconstructed with improved full morphology[J]. International Journal of Hydrogen Energy, 2023, 48 (71): 27778-27789.
  • Bai F, Yin RJ, Liao JY, Zhang Z, Cai SJ, Mu YT, Chen L, Chen L, Tao WQ*. Eccentricity design for the coolant distribution optimization of a practical commercial-size proton exchange membrane fuel cell stack using a novel proper orthogonal decomposition based analysis model[J]. Applied Energy, 2023, 347: 121389.
  • 刘斌,耿士江,李政道,王子星,张卓,陶文铨*. 酒窝型板式换热器流动换热特性分析及优化[J]. 暖通空调, 2023; 53(10):128-133.

2022

  • Zhang Z, Shi JW, Cheng XL, Dai YJ, Tao WQ*. Numerical examination of high-pressure fuel injection in common rail injector based on hydro-mechanical model[J]. Physics of Fluids, 2022;34(5): 057114.
  • Zhang Z, Bai F, Quan HB, Yin RJ, Tao WQ*. PEMFC output voltage prediction based on different machine learning regression models[C].2022 5th International conference on energy, electrical and power engineering (CEEPE): IEEE, 2022: 401-406. (DOI: 10.1109/CEEPE55110.2022.9783124)
  • Zhang Z, Bai F, He P, Tao WQ*. Investigation of a Novel Cathode Flow Field of Proton Exchange Membrane Fuel Cell[C].Energy Proceedings, 2022, 26. (DOI: 10.46855/energy-proceedings-10170)
  • Bai F, Quan HB, Yin RJ, Zhang Z, Jin SQ, He P, Mu YT, Gong XM, Tao WQ*. Three-dimensional multi-field digital twin technology for proton exchange membrane fuel cells[J]. Applied Energy. 2022;324:119763.
  • Bai F, Lei L, Zhang Z, Chen L, Chen L, Tao WQ*. Application of similarity theory in the study of proton exchange membrane fuel cells: a comprehensive review of recent developments and future research requirements[J]. Energy Storage and Saving. 2022;1:3-21.

2021

  • Bai F, Lei L, Zhang Z, Li H, Yan J, Chen L, Dai YJ, Chen L, Tao WQ*. Application of similarity theory in modeling the output characteristics of proton exchange membrane fuel cell[J]. International Journal of Hydrogen Energy. 2021;46:36940-53.
  • Jin PH, Mostafa I, He P, Zhang Z, Zhao CY, Ji WT, Tao WQ*. Liquid film boiling on plain and structured tubular surfaces with and without hydrophobic coating[J]. International Communications in Heat and Mass Transfer. 2021;125: 105284.

2020

  • Zhang Z, He P, Dai YJ, Jin PH, Tao WQ*. Study of the mechanical behavior of paper-type GDL in PEMFC based on microstructure morphology[J]. International Journal of Hydrogen Energy, 2020, 45 (53): 29379-29394.
  • Mostafa I, Jin PH, Zhang Z, Tao WQ*. Experimental study of the falling film evaporation coefficients of R290 in a horizontal enhanced tube array[J]. International Journal of Heat and Mass Transfer. 2020;159: 120099.
  • Jin PH, Zhang Z, Mostafa I, Zhao CY, Ji WT, Tao WQ*. Experimental study of falling film evaporation in tube bundles of doubly-enhanced horizontal tubes[J]. Applied Thermal Engineering. 2020;170: 115006.

2019

  • Jin PH, Zhang Z, Mostafa I, Zhao CY, Ji WT, Tao WQ*. Heat transfer correlations of refrigerant falling film evaporation on a single horizontal smooth tube[J]. International Journal of Heat and Mass Transfer. 2019;133:96-106.

2018

2016

  • Song B, Kang K, Zhang Z, Wang XP*, Liu ZG. Ab Initio Values of the Gas Transport Properties of Hydrogen Isotopologues and Helium-Hydrogen Mixtures at Low Density[J]. Journal of Chemical & Engineering Data, 2016, 61 (5): 1910-1916.