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Performance Analysis of Polymer Electrolyte Membrane Water Electrolyzer Using OpenFOAM

机译:高分子电解质膜水电解槽使用OppFoam的性能分析

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摘要

In this study, an electrochemical model was incorporated into a two-phase model using OpenFOAM® (London, United Kingdom) to analyze the two-phase flow and electrochemical behaviors in a polymer electrolyte membrane water electrolyzer. The performances of serpentine and parallel designs are compared. The current density and overpotential distribution are analyzed, and the volume fractions of oxygen and hydrogen velocity are studied to verify their influence on the current density. The current density decreases sharply when oxygen accumulates in the porous transport layer. Therefore, the current density increased sharply by 3000 A/m2 at an operating current density of 10,000 A/m2. Maldistribution of the overpotential is also observed. Second, we analyze the behaviors according to the current density. At a low current density, most of the oxygen flows out of the electrolyzer. Therefore, the decrease in performance is low. However, the current density is maldistributed when it is high, which results in decreased performance. The current density increases abruptly by 12,000 A/m2. Finally, the performances of the parallel and serpentine channels are analyzed. At a high current density, the performance of the serpentine channel is higher than that of the parallel channel by 0.016 V.
机译:在本研究中,使用OpenFoam®(伦敦,英国)将电化学模型纳入两相模型中,以分析聚合物电解质膜水电解槽中的两相流动和电化学行为。比较了蛇形和平行设计的性能。分析了电流密度和过电势分布,研究了氧气和氢气速度的体积分数,以验证它们对电流密度的影响。当氧气累积在多孔传输层中时,电流密度急剧下降。因此,电流密度急剧增加3000A / m2,其工作电流密度为10,000a / m2。还观察到过势的恶性灌注。其次,我们根据当前密度分析行为。在低电流密度下,大部分氧气流出电解槽。因此,性能的降低低。然而,当高时,电流密度呈现出恶性,这导致性能降低。电流密度突然增加12,000A / m2。最后,分析了平行和蛇形通道的性能。在高电流密度下,蛇形通道的性能高于并联通道的性能0.016 V.

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