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THERMAL AND ELECTROCHEMICAL THREE DIMENSIONAL CFD MODEL OF A PLANAR SOLID OXIDE ELECTROLYSIS CELL

机译:平面固体氧化物电解细胞的热和电化学三维CFD模型

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A three-dimensional computational fluid dynamics (CFD) model has been created to model high-temperature steam electrolysis in a planar solid oxide electrolysis cell (SOEC). The model represents a single cell, as it would exist in an electrolysis stack. Details of the model geometry are specific to a stack that was fabricated by Ceramatec{sup}1, Inc. and tested at the Idaho National Laboratory. Mass, momentum, energy, and species conservation and transport are provided via the core features of the commercial CFD code FLUENT{sup}2. A solid-oxide fuel cell (SOFC) model adds the electrochemical reactions and loss mechanisms and computation of the electric field throughout the cell. The FLUENT SOFC user-defined subroutine was modified for this work to allow for operation in the SOEC mode. Model results provide detailed profiles of temperature, Nernst potential, operating potential, anode-side gas composition, cathode-side gas composition, current density and hydrogen production over a range of stack operating conditions. Mean model results are shown to compare favorably with experimental results obtained from an actual ten-cell stack tested at INL.
机译:已经创建了一种三维计算流体动力学(CFD)模型以在平面固体氧化物电解细胞(SOEC)中模拟高温蒸汽电解。该模型表示单个单元,因为它将存在于电解堆栈中。模型几何的细节特定于由CeramaTec {Sup} 1,Inc。制造的堆栈,并在Idaho国家实验室测试。通过商业CFD代码流畅{SUP} 2的核心特征提供了质量,动量,能量和物种保护和运输。固体氧化物燃料电池(SOFC)模型在整个细胞中增加了电化学反应和丢失机构和电场的计算。为此工作修改了流畅的SOFC用户定义的子程序,以允许在SOEC模式下进行操作。模型结果提供了在一系列堆叠操作条件下的温度,内部潜在,操作电位,阳极侧气体组合物,阴极侧气体组合物,电流密度和氢气产生的详细型材。示出了平均模型结果,以优于与在INL测试的实际十胞电池堆中获得的实验结果相比。

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