Numerical analysis of bubble behavior in proton exchange membrane water electrolyzer flow field with serpentine channel

被引:4
作者
Dang, Duy Khang [1 ]
Zhou, Biao [1 ]
机构
[1] Univ Windsor, Dept Mech Automot & Mat Engn, Windsor, ON N9B 3P4, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
Green hydrogen; Two-phase modeling; Proton exchange membrane water electrolysis; (PEMWE); Bubble behavior; Sustainable energy production; 2-PHASE FLOW; CELL PERFORMANCE; IN-SITU; TRANSPORT; RADIOGRAPHY; DYNAMICS; REGIME; ENERGY;
D O I
10.1016/j.ijhydene.2024.09.145
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Green hydrogen, produced using renewable energy sources, represents a critical component in the transition to sustainable energy systems due to its clean and versatile nature. This research investigates the dynamic behavior of bubbles within the serpentine flow field of a Proton Exchange Membrane Water Electrolysis (PEMWE) cell, aiming to enhance the understanding of two-phase flow dynamics and improve the efficiency of green hydrogen production. Utilizing the Volume of Fluid (VOF) method, a three-dimensional unsteady model was developed to simulate the flow dynamics at the anode of a PEMWE system. The study explores the transition of bubbles from bubbly flow to slug and annular flow, highlighting the significant impact of bubble formation on mass transport and overall cell performance. The results demonstrate that larger bubbles impede liquid water delivery to reaction sites and cause unstable pressure drops. The investigation also examines the influence of wall contact angles on bubble behavior, revealing that hydrophobic surfaces lead to increased gas coverage and more oxygen accumulation inside the channel, which hinders mass transport. These findings underscore the necessity for optimized flow channel designs and enhanced surface treatments to mitigate bubble coalescence and improve PEMWE performance.
引用
收藏
页码:688 / 701
页数:14
相关论文
共 53 条
  • [1] Interface resolving two-phase flow simulations in gas channels relevant for polymer electrolyte fuel cells using the volume of fluid approach
    Andersson, M.
    Beale, S. B.
    Reimer, U.
    Lehnert, W.
    Stolten, D.
    [J]. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2018, 43 (05) : 2961 - 2976
  • [2] Hydrogen electrolyser for sustainable energy production: A bibliometric analysis and future directions
    Arsad, A. Z.
    Hannan, M. A.
    Al-Shetwi, Ali Q.
    Hossain, M. J.
    Begum, R. A.
    Ker, Pin Jern
    Salehi, F.
    Muttaqi, K. M.
    [J]. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2023, 48 (13) : 4960 - 4983
  • [3] Factors influencing the performance and durability of polymer electrolyte membrane water electrolyzer: A review
    Bazarah, Ammar
    Majlan, Edy Herianto
    Husaini, Teuku
    Zainoodin, A. M.
    Alshami, Ibrahim
    Goh, Jonathan
    Masdar, Mohd Shahbudin
    [J]. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2022, 47 (85) : 35976 - 35989
  • [4] Influence of Ionomer Content in IrO2/TiO2 Electrodes on PEM Water Electrolyzer Performance
    Bernt, Maximilian
    Gasteiger, Hubert A.
    [J]. JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2016, 163 (11) : F3179 - F3189
  • [5] Numerical simulation of liquid water emerging and transport in the flow channel of PEMFC using the volume of fluid method
    Chen, Rouxian
    Qin, Yanzhou
    Ma, Suhui
    Du, Qing
    [J]. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2020, 45 (54) : 29861 - 29873
  • [6] Water electrolysis based on renewable energy for hydrogen production
    Chi, Jun
    Yu, Hongmei
    [J]. CHINESE JOURNAL OF CATALYSIS, 2018, 39 (03) : 390 - 394
  • [7] Minimizing the cost of hydrogen production through dynamic polymer electrolyte membrane electrolyzer operation
    Ginsberg, Michael J.
    Venkatraman, Maya
    Esposito, Daniel V.
    Fthenakis, Vasilis M.
    [J]. CELL REPORTS PHYSICAL SCIENCE, 2022, 3 (06):
  • [8] Numerical Study on Taylor Bubble Formation in a Micro-channel T-Junction Using VOF Method
    Guo, Fang
    Chen, Bin
    [J]. MICROGRAVITY SCIENCE AND TECHNOLOGY, 2009, 21 : 51 - 58
  • [9] The case for high-pressure PEM water electrolysis
    Hancke, Ragnhild
    Holm, Thomas
    Ulleberg, Oystein
    [J]. ENERGY CONVERSION AND MANAGEMENT, 2022, 261
  • [10] Green, Turquoise, Blue, or Grey? Environmentally friendly Hydrogen Production in Transforming Energy Systems
    Hermesmann, M.
    Mueller, T. E.
    [J]. PROGRESS IN ENERGY AND COMBUSTION SCIENCE, 2022, 90