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연료전지 고분자 막을 통한 열 및 물질 전달 특성을 반영한 공기측 BOP 핵심 요소 부품 운전 전략 설정open accessOperating Strategy Design for Air-Side BOP Components Considering Heat and Mass Transfer Characteristics through Polymer Electrolyte Membranes in Fuel Cells

Other Titles
Operating Strategy Design for Air-Side BOP Components Considering Heat and Mass Transfer Characteristics through Polymer Electrolyte Membranes in Fuel Cells
Authors
박규형엄석기
Issue Date
May-2026
Publisher
한국자동차공학회
Keywords
Air-side BOP; Components; Operating strategy; Heat and mass transfer characteristics; Polymer electrolyte membrane fuel cells; 공기측 BOP; 요소 부품; 운전 전략; 열 및 물질전달 특성; 고분자전해질 연료전지
Citation
한국자동차공학회 논문집, v.34, no.5, pp 583 - 592
Pages
10
Indexed
SCOPUS
KCI
Journal Title
한국자동차공학회 논문집
Volume
34
Number
5
Start Page
583
End Page
592
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/219447
DOI
10.7467/KSAE.2026.34.5.583
ISSN
1225-6382
2234-0149
Abstract
A physics-based, system-level framework is developed to quantify air processing system (APS) strategies that govern internal fuel cell water management and overall systematic behavior. Air-side components are developed with coupled heat and mass transfer characteristics, including a fuel cell stack that involves condensation, a counter-flow membrane humidifier, and a centrifugal compressor. The stack model is validated against published experimental data. Furthermore, these numerical models are integrated on a piping and instrumental diagram to predict thermodynamic states. Subsequently, parametric studies were conducted on cathode pressure and stoichiometry ratio to determine the membrane-averaged relative humidity (RH), the channel outlet liquid fraction, and humidifier water supply relative to the required stack water mass flow rate. The results showed that a high-pressure/low-stoichiometry strategy could sustain membrane saturation even at low inlet RH, and could reduce humidification demand by 13%. This integrated framework could provide operating maps and design guidance to optimize APS water management.
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