Effect of inlet/outlet configuration on performance of methane steam microreformer

Authorsحسین محمدنظامی,عبداله ایران خواه
Conference Title10th International Chemical Engineering Congress
Holding Date of Conference2018-05-06 - 2018-05-09
Event Place1 - اصفهان
Presented byانجمن مهندسی شیمی ایران
PresentationSPEECH
Conference LevelInternational Conferences

Abstract

Fuel cells offer a highly efficient method of generating electricity. Hydrogen is the main feed of Fuel Cells. For hydrogen production, methane micro-reformers has high surface-to-volume ratio. Exploiting all areas of micro reformers is very important. Simulations using Fluent was carried out at 600 °C and 1 atm to find the best arrangement of inlet/outlet and best channel design(flow path). One inlet and two outlets on opposite sides was found as optimal arrangement i.e uniform velocity distribution. Fuel cells offer a highly efficient method of generating electricity. Hydrogen is the main feed of Fuel Cells. For hydrogen production, methane micro-reformers has high surface-to-volume ratio. Exploiting all areas of micro reformers is very important. Simulations using Fluent was carried out at 600 °C and 1 atm to find the best arrangement of inlet/outlet and best channel design(flow path). One inlet and two outlets on opposite sides was found as optimal arrangement i.e uniform velocity distribution.

tags: Microreformer, methane, steam reforming, simulation, Fluent