Direct Numerical Analysis of $CO_2$ degassing process in ${\mu}DMFC$

마이크로 DMFC 에서 $CO_2$ degassing 과정의 직접 수치 해석

  • 신승원 (홍익대학교 기계시스템디자인공학과) ;
  • 심정익 (홍익대학교 기계시스템디자인공학과) ;
  • 위완석 (홍익대학교 기계시스템디자인공학과) ;
  • 조성원 (홍익대학교 기계시스템디자인공학과)
  • Published : 2007.05.30

Abstract

Recently, increasing demand on not only lighter but also extremely mobile battery make micro fuel cell device very attractive alternative. By reducing the size of fuel cell, surface tension becomes dominant factor with minor gravitational effect. Therefore, it is very difficult to detach the $CO_2$ bubble generating on a cathode side in ${\mu}DMFC$ (micro direct methanol fuel cell). The degassing of a $CO_2$ bubble has drawn quite attention especially for ${\mu}DMFC$ due to its considerable effect on overall machine performance. Our attention has been paid to the dynamic behavior of immiscible bubble attached to the one side of the wall on 2D rectangular channel subject to external shear flow. We use Level Contour Reconstruction Method (LCRM) which is simplified version of front tracking method to track the bubble interface motion. Effects of Reynolds number, Weber number, advancing/receding contact angle and property ratio on bubble detachment characteristic has been numerically identified.

Keywords