Journal of System Simulation ›› 2022, Vol. 34 ›› Issue (7): 1383-1392.doi: 10.16182/j.issn1004731x.joss.22-0281

• Special Columns: Special Issue on Power and Energy Automation Simulation •     Next Articles

Modeling and Simulation of SOFC System with Heat Transfer among BoP Components

Ling Hong(), Rongmin Wu, Jianwu Zhou, Tian Xia, Xiaojie Li, Pengjie Tian, Hao Peng, Chunhui Shou()   

  1. Zhejiang Provincial Key Laboratory of Solar Energy Utilization & Energy Saving Technology, Zhejiang Energy Group R&D, Hangzhou 311121, China
  • Received:2022-03-29 Revised:2022-06-01 Online:2022-07-30 Published:2022-07-20
  • Contact: Chunhui Shou E-mail:hongl_92@163.com;shouchunhui@zjenergy.com.cn

Abstract:

High temperature solid oxide fuel cell (SOFC) is a high temperature and efficient hydrogen-electric conversion device. Its high temperature operating environment puts forward higher requirements for thermal insulation of stack and balance of plants(BoP) in the system. In this paper, a lumped SOFC system model is established based on the thermal efficiency-heat transfer unit number method (ε-NTU method), in combination with limited measurable parameters for high-temperature system.Quantitative analysis of components temperature and heat transfer among components can be achieved by heat exchange simulation between components and BoP hot-box environment. A simple feedback controlleris designed for system self-starting and operation. Results show that the BoP hot-box plays the role of temperature balance, which is benefit for waste heat utilization by heating the inlet gas, and lower the highest equipment temperature for a longer system lifetime.

Key words: SOFC(solid oxide fuel cell), lumped model, heat transfer, thermal insulation, feedback control

CLC Number: