Optimization of a Membraneless Microfluidic Fuel Cell with a Double-Bridge Flow Channel

  • Oh, Ji-Hyun
  • Vuong, Tien-Dung
  • Kim, Kwang-Yong
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초록

In this work, a design optimization study was conducted to improve the performance of a membraneless microfluidic fuel cell with a double-bridge cross-section of the flow channel. Governing equations including Navier-Stokes, mass-transport, and Butler-Volmer equations were solved numerically to analyze the electrochemical phenomena and evaluate the performance of the fuel cells. Optimization was performed to maximize the peak power density using a genetic algorithm combined with a surrogate model constructed by radial basis neural network. Two sub-channel widths of the flow channel were selected as design variables for the optimization. As a result, a large increase in the inner channel width and a small decrease in the outer channel width effectively increased the peak power density of the MMFC. The optimal design increased the peak power density by 57.6% compared to the reference design.

키워드

membraneless microfluidic fuel celldouble-bridge channelnumerical modeloptimizationmixing regionPERFORMANCEDESIGNFABRICATIONALKALINE
제목
Optimization of a Membraneless Microfluidic Fuel Cell with a Double-Bridge Flow Channel
저자
Oh, Ji-HyunVuong, Tien-DungKim, Kwang-Yong
DOI
10.3390/en15030973
발행일
2022-02
유형
Article
저널명
Energies
15
3