LIU Ziyu, ZHAO Shuang, WANG Xiaolu, et al. Influence of Interconnect Structure on Flow Field Uniformity and Electrochemical Properties of SOFC[J]. 2026, 46(4): 1486-1495.
LIU Ziyu, ZHAO Shuang, WANG Xiaolu, et al. Influence of Interconnect Structure on Flow Field Uniformity and Electrochemical Properties of SOFC[J]. 2026, 46(4): 1486-1495. DOI: 10.13334/j.0258-8013.pcsee.242347.
The rib-type structure of the interconnect is crucial for flow field uniformity
lifespan
and performance of solid oxide fuel cell (SOFC). This article establishes a three-dimensional numerical model of a single SOFC cell
using the flow uniformity index as an indicator to evaluate the flow field design’s adaptability to material flow rates. It investigates the impacts of key interconnect structural parameters
such as rib type
rib width
and rib height on flow uniformity
power density
and fuel utilization. The results demonstrate that teardrop-shaped ribs improve flow uniformity
power density
and fuel utilization compared with rectangular and cylindrical ribs. Moreover
the effects of rib width and height on power density and fuel utilization exhibit a parabolic trend that first increases and then decreases. The optimal overall cell performance is achieved when the rib width is 1.0 mm and rib height is 0.5 mm. This study provides useful recommendations for optimizing fuel cell stack design