• Acta Physica Sinica
  • Vol. 69, Issue 9, 098801-1 (2020)
Han Xu*, Lu Zhang, and Zheng Dang
Author Affiliations
  • Department of Building Environment and Energy Engineering, Xi’an Jiaotong University, Xi’an 710049, China
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    DOI: 10.7498/aps.69.20191697 Cite this Article
    Han Xu, Lu Zhang, Zheng Dang. Coupling mechanism of mass transport and electrochemical reaction within patterned anode of solid oxide fuel cell[J]. Acta Physica Sinica, 2020, 69(9): 098801-1 Copy Citation Text show less
    (a) Schematic of a patterned anode; (b) computational domain and boundary conditions of the model in the present study.
    Fig. 1. (a) Schematic of a patterned anode; (b) computational domain and boundary conditions of the model in the present study.
    Model validation of the present LB model.
    Fig. 2. Model validation of the present LB model.
    Patterned anode performance at standard case: (a) Potential distribution in the entire anode; (b) potential distribution at z/Hion = 1.0; (c) potential distribution at TPBs; (d) effect of dimensionless potential (Fϕ0/RT) on dimensionless average current density (iav/i0); (e) effect of dimensionless exchange current density (iex/i0) on iav/i0; (f) combined effect of iex/i0 and Fϕ0/RT on iav/i0; (e) phase map generated based on panel (f) for rational design and operation of patterned anode.
    Fig. 3. Patterned anode performance at standard case: (a) Potential distribution in the entire anode; (b) potential distribution at z/Hion = 1.0; (c) potential distribution at TPBs; (d) effect of dimensionless potential (0/RT) on dimensionless average current density (iav/i0); (e) effect of dimensionless exchange current density (iex/i0) on iav/i0; (f) combined effect of iex/i0 and 0/RT on iav/i0; (e) phase map generated based on panel (f) for rational design and operation of patterned anode.
    Effect of height-to-width ratio of electronic conductor (Hele/Lele) on patterned anode performance: (a) Combined effect of dimensionless exchange current density (iex/i0) and dimensionless potential (Fϕ0/RT) on dimensionless average current density (iav/i0); (b) phase maps under different Hele/Lele generated based on panel (a) for rational design and operation of patterned anode.
    Fig. 4. Effect of height-to-width ratio of electronic conductor (Hele/Lele) on patterned anode performance: (a) Combined effect of dimensionless exchange current density (iex/i0) and dimensionless potential (0/RT) on dimensionless average current density (iav/i0); (b) phase maps under different Hele/Lele generated based on panel (a) for rational design and operation of patterned anode.
    Effect of width-to-spacing ratio of electronic conductor (Lele/ΔL) on patterned anode performance: (a) Combined effect of dimensionless exchange current density (iex/i0) and dimensionless potential (Fϕ0/RT) on dimensionless average current density (iav/i0); (b) phase maps under different Lele/ΔL generated based on panel (a) for rational design and operation of patterned anode.
    Fig. 5. Effect of width-to-spacing ratio of electronic conductor (LeleL) on patterned anode performance: (a) Combined effect of dimensionless exchange current density (iex/i0) and dimensionless potential (0/RT) on dimensionless average current density (iav/i0); (b) phase maps under different LeleL generated based on panel (a) for rational design and operation of patterned anode.
    Effect of height-to-width ratio of ionic conductor (Hion/Lion) on patterned anode performance: (a) Combined effect of dimensionless exchange current density (iex/i0) and dimensionless potential (Fϕ0/RT) on dimensionless average current density (iav/i0); (b) phase maps under different Hion/Lion generated based on panel (a) for rational design and operation of patterned anode.
    Fig. 6. Effect of height-to-width ratio of ionic conductor (Hion/Lion) on patterned anode performance: (a) Combined effect of dimensionless exchange current density (iex/i0) and dimensionless potential (0/RT) on dimensionless average current density (iav/i0); (b) phase maps under different Hion/Lion generated based on panel (a) for rational design and operation of patterned anode.
    坐标边界条件
    z* = 0 ϕ* = 0
    z* = 1 + Hele/Hionϕ* = 1
    x* = 0, Lion/Hion, 电子导体左右边界 ${ {\partial \phi ^*} / {\partial x^* = 0} }$
    z* = 1 (非TPBs) ${ {\partial \phi ^*} / {\partial z^* = 0} }$
    z* = 1 (TPBs) ${\left. { {{i} }^*} \right|_{ {\rm{el} } } } = {\left. { - \sigma ^*\nabla \phi ^*} \right|_{ {\rm{el} } } } = {\left. { {{i} }^*} \right|_{ {\rm{ion} } } } = {\left. { - \nabla \phi ^*} \right|_{ {\rm{ion} } } }$
    Table 1.

    Boundary conditions of the present study.

    本文的边界条件

    Han Xu, Lu Zhang, Zheng Dang. Coupling mechanism of mass transport and electrochemical reaction within patterned anode of solid oxide fuel cell[J]. Acta Physica Sinica, 2020, 69(9): 098801-1
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