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Comparison of Planar and Tubular Flow Field Plates for Proton Exchange Membrane Fuel Cells (PEMFCs) through Simulation

机译:通过模拟比较质子交换膜燃料电池(PEMFCs)的平面和管状流场板

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The proton exchange membrane fuel cell (PEMFC) is an excellent clean energy alternative to current non-renewable energy sources. Bipolar plates (BPPs) are a key component of these PEMFCs and are directly responsible for their performance. Much research has been invested in channel design, materials characterization, and interfacial phenomenon of BPPs but not much attention has been paid to the architecture of the plate itself. Traditional BPPs are created in a planar form, but recent research efforts have revealed a novel tubular design that performs equally as well if not better than conventional plates. This study will experiment with three different channel designs for both planar and tubular plate configurations. The finite element ANSYS software will be used to determine and visualize velocity and pressure distributions of fluid flow through the BPP channels. Results from this study will validate whether the tubular configuration is superior to the planar form as well as which channel design is most appropriate for either configuration.
机译:质子交换膜燃料电池(PEMFC)是对当前的不可再生能源的优异清洁能量替代方案。双极板(BPP)是这些PEMFCS的关键组成部分,直接负责其性能。已经投入了频道设计,材料表征和BPPS的界面现象的许多研究,但没有太多关注板本身的架构。传统的BPP以平面形式创建,但最近的研究努力揭示了一种新型管状设计,同样比传统板更好。本研究将对平面和管状板构造进行三种不同的通道设计。有限元ANSYS软件将用于确定和可视化流过BPP通道的流体流的速度和压力分布。本研究的结果将验证管状配置是否优于平面形式,以及哪种通道设计最适合于任何配置。

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