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首页> 外文期刊>Journal of thermal analysis and calorimetry >Three-dimensional computational fluid dynamics modeling of proton exchange membrane electrolyzer with new flow field pattern
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Three-dimensional computational fluid dynamics modeling of proton exchange membrane electrolyzer with new flow field pattern

机译:新流场图案质子交换膜电解槽的三维计算流体动力学建模

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摘要

The performance of a proton exchange membrane electrolyzer cell directly depends on the arrangement of flow field in bipolar plates (BPs). The design of flow field in BPs should be in a way that a uniform distribution of flow is achieved; in this regard, a three-dimensional model of a new flow field arrangement with a cross section of 64cm(2) is proposed and the distribution of current density, temperature, and pressure drop is investigated. A numerical model is carried out at the steady-state, single-phase, and non-isothermal condition based on finite volume control method. The continuity, momentum, species, energy and electric charge balance equations together with electrochemical kinetics relations in different regions of PEM electrolyzer are solved in a single-domain model. The results of numerical model are compared against experimental data, and an acceptable agreement is observed at low and medium currents densities. The results reveal that the spiral flow field yields a uniform distribution of produced hydrogen and current density. Moreover, the proposed flow field design leads to a uniform distribution of temperature through the channel path. The availability of water and current density at vertical paths of the flow field are higher.
机译:质子交换膜电解槽电池的性能直接取决于双极板(BPS)中流场的排列。 BPS中的流场的设计应以均匀的流动分布实现;在这方面,提出了一种具有64cm(2)的横截面的新流场布置的三维模型,并且研究了电流密度,温度和压降的分布。基于有限体积控制方法,在稳态,单相和非等温条件下进行数值模型。在单结构域模型中解决了PEM电解槽不同区域中的电化学动力学关系的连续性,动量,物种,能量和电荷平衡方程。将数值模型的结果与实验数据进行比较,并且在低和中流密度下观察到可接受的协议。结果表明,螺旋流场产生产生的氢和电流密度的均匀分布。此外,所提出的流场设计导致通过通道路径均匀地分布温度。流场垂直路径的水和电流密度的可用性更高。

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