A review of heat transfer and thermal management methods for temperature gradient reduction in solid oxide fuel cell (SOFC) stacks

Z Zeng, Y Qian, Y Zhang, C Hao, D Dan, W Zhuge - Applied Energy, 2020‏ - Elsevier
Solid oxide fuel cell (SOFC) stacks are promising power generation devices due to their high
efficiency and flexible fuel capability. Recent application of SOFC stacks has shifted from …

[HTML][HTML] Continuum scale modelling and complementary experimentation of solid oxide cells

SB Beale, M Andersson, C Boigues-Muñoz… - Progress in energy and …, 2021‏ - Elsevier
Solid oxide cells are an exciting technology for energy conversion. Fuel cells, based on solid
oxide technology, convert hydrogen or hydrogen-rich fuels into electrical energy, with …

Mathematical modeling of solid oxide fuel cells: A review

SA Hajimolana, MA Hussain, WMAW Daud… - … and sustainable energy …, 2011‏ - Elsevier
This paper presents a review of studies on mathematical modeling of solid oxide fuel cells
(SOFCs) with respect to the tubular and planar configurations. In this work, both …

[ספר][B] High-temperature solid oxide fuel cells for the 21st century: fundamentals, design and applications

K Kendall, M Kendall - 2015‏ - books.google.com
High-temperature Solid Oxide Fuel Cells, Second Edition, explores the growing interest in
fuel cells as a sustainable source of energy. The text brings the topic of green energy front …

Review of the micro-tubular solid oxide fuel cell: Part I. Stack design issues and research activities

V Lawlor, S Griesser, G Buchinger, AG Olabi… - Journal of power …, 2009‏ - Elsevier
Fuel cells are devices that convert chemical energy in hydrogen enriched fuels into
electricity electrochemically. Micro-tubular solid oxide fuel cells (MT-SOFCs), the type …

[HTML][HTML] Dynamic modelling of a direct internal reforming solid oxide fuel cell stack based on single cell experiments

L van Biert, M Godjevac, K Visser, PV Aravind - Applied Energy, 2019‏ - Elsevier
Direct internal reforming enables optimal heat integration and reduced complexity in solid
oxide fuel cell (SOFC) systems, but thermal stresses induced by the increased temperature …

A fully-homogenized multiphysics model for a reversible solid oxide cell stack

M Navasa, XY Miao, HL Frandsen - International Journal of Hydrogen …, 2019‏ - Elsevier
In electrochemical devices such as solid oxide cell stacks, many physical phenomena are
interacting on many different length scales in an intricate geometry. Modeling is a strong tool …

Reversible operation of solid oxide cells under electrolysis and fuel cell modes: Experimental study and model validation

D Ferrero, A Lanzini, P Leone, M Santarelli - Chemical Engineering …, 2015‏ - Elsevier
A combined experimental and modeling study on reversible solid oxide cells (SOCs) is
presented. Two commercial Ni/YSZ supported planar SOCs with the air electrode made by …

[HTML][HTML] Modelling of local mechanical failures in solid oxide cell stacks

XY Miao, OB Rizvandi, M Navasa, HL Frandsen - Applied Energy, 2021‏ - Elsevier
Solid oxide cells can deliver highly efficient energy conversions between electricity and
fuels/chemicals. A central challenge of upscaling solid oxide cells is the probability of failure …

Numerical thermomechanical modelling of solid oxide fuel cells

M Peksen - Progress in Energy and Combustion Science, 2015‏ - Elsevier
Over the last decade, many computational models have been presented to describe the
complex thermomechanical behaviour of solid oxide fuel cells. The present study elucidates …