Simulation of the Hydrogen Conversion Rate Prediction for a Solar Chemical Reactor

태양열 화학반응기의 수소전환효율 예측 시뮬레이션

  • Ko, Jo-Han (Dept. of Mechanical Eng., Graduate School, Inha University) ;
  • Seo, Tae-Beom (Dept. of Mechanical Eng., Inha University)
  • 고요한 (인하대학교 대학원 기계공학과) ;
  • 서태범 (인하대학교 기계공학과)
  • Published : 2008.11.14

Abstract

Steam reforming of methane is the most wide spread method for hydrogen production. It has heed studied more than 60 years. methane reforming has advantages in technological maturity and economical production cost. Using a high-temperature solar thermal energy is an advanced technology in Steam reforming process. The synthesis gas, the product of the reforming process, can be applied directly for a combined cycle or separated for a hydrogen. In this paper, hydrogen conversion rate of a solar chemical reactor is calculated using commercial CFD program. 2 models are considered. Model-1 is original model which is designed from the former researches. And model-2 is ring-disk set of baffle is inserted to enhance the performance. The solar chemical reactor has 3 inlet nozzle at the bottom of the side wall near quartz glass and an exit is located at the top. Methane and steam is premixed with 50:50 mole fraction and goes into the inside. Passing through the porous media, the reactants are conversed into hydrogen and carbon monoxide.

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