Effects of Bridge-Shaped Microchannel Geometry on the Performance of a Micro Laminar Flow Fuel Cell

  • Tanveer, Muhammad
  • Kim, Kwang-Yong
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초록

A laminar flow micro fuel cell comprising of bridge-shaped microchannel is investigated to find out the effects of the cross-section shape of the microchannel on the performance. A parametric study is performed by varying the heights and widths of the channel and bridge shape. Nine different microchannel cross-section shapes are evaluated to find effective microchannel cross-sections by combining three bridge shapes with three channel shapes. A three-dimensional fully coupled numerical model is used to calculate the fuel cell's performance. Navier-Stokes, convection and diffusion, and Butler-Volmer equations are implemented using the numerical model. A narrow channel with a wide bridge shape shows the best performance among the tested nine cross-sectional shapes, which is increased by about 78% compared to the square channel with the square bridge shape.

키워드

laminar flow fuel cellnumerical modelbridge-shaped microchannelpower densityohmic lossesMEMBRANELESSMODELELECTRODESCHANNEL
제목
Effects of Bridge-Shaped Microchannel Geometry on the Performance of a Micro Laminar Flow Fuel Cell
저자
Tanveer, MuhammadKim, Kwang-Yong
DOI
10.3390/mi10120822
발행일
2019-12
유형
Article
저널명
Micromachines
10
12