개질관 내부 레이놀즈 수와 버너 온도에 따른 열유동 및 반응 특성

  • 한준희; 
  • 윤기봉; 
  • 김지윤; 
  • 이성혁

초록

The study investigated numerically the heat transfer and chemical reaction characteristics of a methane-steam reforming by using a 3-dimensional computational fluid dynamics (CFD) code (Fluent ver. 16.1). The fuel temperature and its species mole fractions were estimated for various Reynolds number in the reformer tube at different burner temperatures. The catalysts were modeled as the porous medium of nicrome in the reformer tube. We considered radiation effect as well as conduction and convective heat transfer because the methane-steam was reformed at very high temperature condition above 1000 K. For two different Reynolds numbers of 49,000 and 88,000 and the burner temperatures were in the range from 1,100 K to 1,300 K. At a low Reynolds number, the fuel temperature increased, leading to increase in hydrogen reforming. However, fuel temperature and hydrogen reforming decreased because of higher convective heat transfer from relatively low fuel temperature. Moreover, the hydrogen reforming also increased with burner temperature.

키워드

computational fluid dynamics; methane-steam reforming; reynolds number
제목
개질관 내부 레이놀즈 수와 버너 온도에 따른 열유동 및 반응 특성
저자
한준희; 윤기봉; 김지윤; 이성혁
DOI
10.7842/kigas.2015.19.5.69
발행일
2015-10
저널명
한국가스학회지
권
19
호
5
페이지
69 ~ 74