NUMERICAL STUDY ON THE FLOW CHARACTERISTICS OF MANIFOLD FEED-STREAM IN POLYMER ELECTROLYTE FUEL CELL

고분자 전해질 연료전지의 매니폴드 설계 및 해석

  • 정혜미 (한국항공대학교 항공우주기계공학과) ;
  • 엄석기 (한국항공대학교 고분자연료전지연구단) ;
  • 박정선 (한국항공대학교 항공우주기계공학과) ;
  • 이원용 (한국항공대학교 고분자연료전지연구단) ;
  • 김창수 (한국항공대학교 고분자연료전지연구단)
  • Published : 2005.06.01

Abstract

The effects of internal manifold designs the reactant feed-stream in Polymer Electrolyte Fuel Cells (PEFCs) is studied to figure out mass flow-distribution patterns over an entire fuel cell stack domain. Reactants flows are modeled either laminar or turbulent depending on regions and the open channels in the bipolar plates are simulated by porous media where permeability should be pre-determined for computational analysis. In this work, numerical models for reactant feed-stream in the PEFC manifolds are classified into two major flow patterns: Z-shape and U-shape. Several types of manifold geometries are analyzed to find the optimal manifold configurations. The effect of heat generation in PEFC on the flow distribution is also investigated applying a simplified heat transfer model in the stack level (i.e. multi-cell electrochemical power-generation unit). This modeling technique is well suited for many large scale problems and this scheme can be used not only to account for the manifold flow pattern but also to obtain information on the optimal design and operation of a PEMC system.

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