Performance Characteristics of PEMFC by flow Configurations and Operating Condition

유로형상 및 운전조건에 따른 고분자 전해질 연료전지의 성능 특성

  • Lee, Pil-Hyong (Dept. of Mechanical engineering, University of Incheon) ;
  • Cho, Son-Ah (Dept. of Mechanical engineering, University of Incheon) ;
  • Han, Sang-Seok (Dept. of Mechanical engineering, University of Incheon) ;
  • Hwang, Sang-Soon (Dept. of Mechanical engineering, University of Incheon)
  • Published : 2007.05.30

Abstract

For proton exchange membrane fuel cell, it is very important to design the flow channel on separation plate optimally to maximize the current density at same electrochemical reaction surface and reduce the concentration polarization occurred at high current density. In this paper, three dimensional computation model including anode and cathode domain together was developed to examine effects of flow patterns and operation conditions such as humidity and operating temperature on performance of fuel cell. Results show that voltage at counter flow condition is higher than that at coflow condition in parallel and interdigitated flow pattern. And fuel cell with interdigitated flow pattern which has better mass transport by convection flow through gas diffusion layer has higher performance than with parallel flow pattern but its pressure drop is increased such that the trade off between performance and pressure drop should be considered for selection of flow pattern of fuel cell.

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