首页> 外文期刊>Journal of Flow Control, Measurement & Visualization >Visualization and Measurement of Water Distribution in Through-Plane Direction of Polymer Electrolyte Fuel Cell during Start-Up by Using Neutron Radiography
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Visualization and Measurement of Water Distribution in Through-Plane Direction of Polymer Electrolyte Fuel Cell during Start-Up by Using Neutron Radiography

机译:用中子射线照相法观察聚合物电解质燃料电池在启动过程中水在整个平面内的分布情况并进行可视化测量

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Water management in a polymer electrolyte fuel cell (PEFC) is a key topic for PEFC operation. A microporous layer (MPL) has been recently used to improve the water flooding in the gas diffusion layer (GDL) around the catalyst layer. However, the mechanisms of this MPL are not completely understood because of the difficulty of measuring the water distribution during operation. To clarify the water-accumulation phenomena with the MPL, visualization and measurement of the water distribution in the through-plane direction of a small fuel cell is carried out by using neutron radiography. The parallelism of the neutron flux is optimized by using a collimator to observe the transient change in the water distributions, and two-dimensional water distributions in the through-plane direction of the PEFC can be obtained every 60 s. The differences in the water accumulation processes in the GDL without and with the MPL under the lands and channels are compared. It is observed that the water accumulation in the GDL under the land is greater than that under the channel during the period of early PEFC operation. Water evacuation from the GDL to the channel mainly occurs around the land corners. Furthermore, one-dimensional water distributions are calculated from the visualized water distributions, and the results without and with the MPL in the cathode are compared. The water thickness in the through-plane direction attains its maximum value around the boundary between the catalyst layer and the GDL without the MPL, whereas it is attained between the MPL and the GDL with the MPL. The maximum water accumulation in the GDL under the land without the MPL is higher than that with the MPL.
机译:聚合物电解质燃料电池(PEFC)中的水管理是PEFC操作的关键主题。最近已使用微孔层(MPL)改善催化剂层周围气体扩散层(GDL)中的水驱。然而,由于在操作期间难以测量水的分布,因此尚未完全理解该MPL的机理。为了用MPL阐明积水现象,通过使用中子射线照相法对小型燃料电池的整个平面方向上的水分布进行可视化和测量。通过使用准直仪观察水分布的瞬态变化来优化中子通量的平行度,并且每60 s可以获得PEFC贯穿平面方向上的二维水分布。比较了在陆地和航道下没有和有MPL的GDL中水的蓄积过程的差异。可以观察到,在PEFC早期运行期间,陆地下GDL中的蓄水量大于河道中的蓄水量。从GDL疏散到河道的水主要发生在陆地拐角附近。此外,从可视化的水分布计算一维水分布,并比较在阴极上没有和有MPL的结果。在没有MPL的情况下,在催化剂层与GDL之间的边界附近,通过平面方向上的水厚度达到最大值,而在具有MPL的情况下,在MPL与GDL之间达到水厚度最大值。没有MPL的土地下GDL中的最大蓄水量高于具有MPL的土地中。

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