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张卓

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所在单位:能源与动力工程学院
学历:博士研究生毕业
办公地点:兴庆校区东三楼
性别:男
联系方式:
学位:博士
职称:助理教授
毕业院校:西安交通大学

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发表论文
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ORCID:0000-0003-0750-2428

Scops ID:57202848708

2026

  • Zhang Z*Li YH, Xue K, Bai XS, Mu YT, Xin N, Tao WQ. Compression–cooling coupled effects on transport characteristics andvoltage losses in large‑area groove‑type PEMFCs[J]. International Journal of Heat and Mass Transfer, 2026;269:129096.

  • Li ZD, Xue XY, Liu B, Zhang Z*,  Tao WQ*, Experimental and numerical investigation on polymer-based plate heat exchangers: A promising alternative to aluminum foil designs[J], International Communications in Heat and Mass Transfer, 2026;177:111460.

  • Zhang Z*, Wang Y, Luo QW, Yang QR, Fan ZQ, Chen L, Tao WQ. Topology optimization and performance simulation of the transition zone of the proton exchange membrane fuel cell flow field[J]. International Journal of Heat and Mass Transfer, 2026;263:128669.

  • Zhang Z*, Zhang RY, Zhang XL, Tang ZY, Wang ZX, Wang Y, Dai YJ, Chen L,Tao WQ.A combined FEM-CFD method for investigating transport properties of compressed porous electrodes in PEMFC: a microstructure perspective[J]. Energies, 2026, 19 (1): 99.

2025

  • 陶文铨*, 白帆, 张卓, 何璞, 方文振, 母玉同, 陈磊, 陈黎. 质子交换膜燃料电池的数值仿真及其工程应用综述[J]. 科学通报. 2025.

  • Zhang Z, Cai SJ, Chen JH, Guo HB, Tao WQ*. A comprehensive system simulation from PEMFC stack to fuel cell vehicle[J]. Applied Energy, 2025, 401: 126678.

  • Tang Z, Liu X, Chen L, Zhang Z, Tao WQ*. Study on thermal and flow characteristics and correlations of single-phase laminar wavy microchannels[J]. Journal of Thermal Analysis and Calorimetry, 2025, 150 (9): 7049-7059.

  • 蔡赛杰, 朱昊宁, 张卓, 陈俊宏, 陶文铨. 运行参数对质子交换膜燃料电池堆耐久性影响的实验研究[J]. 西安交通大学学报. 2025, 59:1-11.

  • Zhang Z, Quan HB, Cai SJ, Li ZD, Tao WQ*. Design strategies for mainstream flow channels in large-area PEMFC: From typical units to large areas[J]. Applied Energy, 2025, 388: 125628.(知名工程学网站Advance in Engineering关注报导)

  • Cai SJ, Wang MC, Chen JH, Zhang Z, He P, Tao WQ*. An efficient neural-network-based image processing method for water quantification in a transparent proton exchange membrane fuel cell[J]. Applied Energy, 2025, 382: 125249.

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.